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Sodium carbonate perhydrate, Na2CO3·1.5H2O2, commonly known as sodium percarbonate, has been structurally characterized at temperatures ranging from 293 down to 100 K. As the temperature drops, there is a reversible phase change between 250 and 240 K, in which the crystallographic mirror plane of the room-temperature space group, Cmca, is lost, transforming it to Pbca. This transformation is accompanied by a reversal in the expansion coefficient of cell side b, which, like the other two sides, initially contracts on cooling. The two crystallographically independent hydrogen peroxide sites undergo the largest change, where the disorder seen at room temperature gradually diminishes and is almost completely absent at 100 K, thus indicating dynamic rather than static disorder. It is noteworthy that, despite Cmca being the preferred room-temperature space group in the current work, two previous single-crystal studies rejected this space group in favour of non-centrosymmetric Aba2 [Carrondo et al. (1977). J. Chem. Soc. Dalton Trans. pp. 2323-2331; Adams & Pritchard (1977). Acta Cryst. B33, 3650-3653]. A re-evaluation of these determinations indicates that they are identical to the current structure and should be re-assigned to Cmca.

Supporting information

cif

Crystallographic Information File (CIF) https://doi.org/10.1107/S0108768103012291/na5004sup1.cif
Contains datablocks room, m23, m33, m50, k150a, liqn, aber, carskap, carob

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S0108768103012291/na5004roomsup2.hkl
Contains datablock r

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S0108768103012291/na5004m23sup3.hkl
Contains datablock r

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S0108768103012291/na5004m33sup4.hkl
Contains datablock p

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S0108768103012291/na5004m50sup5.hkl
Contains datablock r

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S0108768103012291/na5004k150asup6.hkl
Contains datablock r

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S0108768103012291/na5004liqnsup7.hkl
Contains datablock r

Computing details top

Data collection: Collect (Nonius BV, 1997-2000) for room, m23, m33, m50, k150a, liqn. Cell refinement: HKL SCALEPACK (Otwinowski & Minor 1997) for room, m23, m33, m50, k150a, liqn. Data reduction: HKL DENZO and SCALEPACK (Otwinowski & Minor 1997) for room, m23, m33, m50, k150a, liqn. For all compounds, program(s) used to solve structure: SHELXS97 (Sheldrick, 1997); program(s) used to refine structure: SHELXL97 (Sheldrick, 1997); molecular graphics: ORTEP-3 for Windows (Farrugia, 1997); software used to prepare material for publication: WinGX publication routines (Farrugia, 1999).

Figures top
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[Figure 13]
(room) top
Crystal data top
CH3Na2O6F(000) = 632
Mr = 157.01Dx = 2.152 Mg m3
Orthorhombic, CmcaMo Kα radiation, λ = 0.71073 Å
Hall symbol: -C 2bc 2Cell parameters from 1163 reflections
a = 6.7138 (4) Åθ = 1.0–27.5°
b = 15.7407 (11) ŵ = 0.36 mm1
c = 9.1732 (7) ÅT = 293 K
V = 969.42 (12) Å3Prism, colourless
Z = 80.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
603 independent reflections
Radiation source: Enraf Nonius FR590400 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.044
ϕ and ω scans with κ offsetsθmax = 27.5°, θmin = 3.4°
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
h = 87
Tmin = 0.993, Tmax = 1.014k = 1420
2341 measured reflectionsl = 1110
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.028All H-atom parameters refined
wR(F2) = 0.064 w = 1/[σ2(Fo2) + (0.0137P)2]
where P = (Fo2 + 2Fc2)/3
S = 1.04(Δ/σ)max = 0.005
603 reflectionsΔρmax = 0.22 e Å3
83 parametersΔρmin = 0.21 e Å3
0 restraintsExtinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4
Primary atom site location: structure-invariant direct methodsExtinction coefficient: 0.0081 (7)
Crystal data top
CH3Na2O6V = 969.42 (12) Å3
Mr = 157.01Z = 8
Orthorhombic, CmcaMo Kα radiation
a = 6.7138 (4) ŵ = 0.36 mm1
b = 15.7407 (11) ÅT = 293 K
c = 9.1732 (7) Å0.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
603 independent reflections
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
400 reflections with I > 2σ(I)
Tmin = 0.993, Tmax = 1.014Rint = 0.044
2341 measured reflections
Refinement top
R[F2 > 2σ(F2)] = 0.0280 restraints
wR(F2) = 0.064All H-atom parameters refined
S = 1.04Δρmax = 0.22 e Å3
603 reflectionsΔρmin = 0.21 e Å3
83 parameters
Special details top

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.

Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
C100.33778 (9)0.25026 (14)0.0151 (3)
Na10.250.01077 (3)0.250.02674 (17)
Na20.250.2500.02340 (16)
O100.26807 (5)0.17718 (11)0.0210 (3)
O200.40946 (6)0.18316 (11)0.0213 (3)
O300.33466 (6)0.39000 (11)0.0220 (3)
O110.09368 (19)0.13857 (10)0.33870 (18)0.0287 (4)0.5
O120.09491 (19)0.11353 (10)0.40961 (17)0.0271 (4)0.5
O310.0906 (3)0.02531 (15)0.0181 (3)0.0344 (9)0.3071 (13)
O4100.0350 (2)0.0534 (4)0.0287 (10)0.386 (3)
H110.049 (3)0.1807 (11)0.2701 (19)0.032 (7)*0.5
H120.055 (2)0.0966 (11)0.511 (2)0.032 (7)*0.5
H310.052 (3)0.0848 (12)0.019 (2)0.032 (7)*0.5
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C10.0138 (7)0.0181 (8)0.0133 (7)000.0008 (7)
Na10.0249 (3)0.0206 (3)0.0347 (4)00.0040 (2)0
Na20.0213 (3)0.0266 (3)0.0223 (3)0.0002 (2)0.0003 (2)0.0036 (2)
O10.0295 (5)0.0156 (5)0.0178 (5)000.0026 (5)
O20.0298 (5)0.0163 (5)0.0177 (5)000.0023 (5)
O30.0300 (5)0.0183 (5)0.0178 (5)000.0004 (4)
O110.0302 (7)0.0282 (8)0.0276 (9)0.0038 (6)0.0082 (7)0.0068 (8)
O120.0308 (7)0.0285 (9)0.0220 (9)0.0087 (6)0.0019 (6)0.0023 (8)
O310.0341 (13)0.024 (2)0.0449 (18)0.0065 (10)0.0198 (13)0.0047 (16)
O410.047 (2)0.0197 (18)0.0195 (17)000.0017 (13)
Geometric parameters (Å, º) top
C1—O31.2828 (15)O2—Na1xiv2.3950 (7)
C1—O21.2853 (16)O3—Na2xv2.3688 (7)
C1—O11.2859 (16)O3—Na2i2.3688 (7)
Na1—O31i2.392 (3)O11—O12iv0.761 (2)
Na1—O312.392 (3)O11—O11iv1.258 (3)
Na1—O2ii2.3950 (7)O11—O121.4771 (18)
Na1—O2iii2.3950 (7)O11—Na2i2.5233 (16)
Na1—O11i2.4104 (16)O11—H110.962 (18)
Na1—O112.4104 (16)O12—O11iv0.761 (2)
Na1—O12iv2.4175 (15)O12—O12iv1.274 (3)
Na1—O12v2.4175 (15)O12—Na1xvi2.4175 (15)
Na1—O41v2.493 (2)O12—Na2xv2.5271 (15)
Na1—O412.493 (2)O12—H121.002 (19)
Na1—O31vi2.742 (3)O31—O410.706 (3)
Na1—O31vii2.742 (3)O31—O31vi0.863 (5)
Na2—O12.3537 (7)O31—O31iv1.217 (4)
Na2—O1viii2.3537 (7)O31—O41xvii1.305 (3)
Na2—O3ix2.3688 (7)O31—O31xvii1.492 (4)
Na2—O3v2.3688 (7)O31—Na1xviii2.742 (3)
Na2—O11x2.5233 (16)O31—H311.031 (19)
Na2—O11i2.5233 (16)O41—O31iv0.706 (3)
Na2—O12v2.5271 (15)O41—O31xvii1.305 (3)
Na2—O12ix2.5271 (15)O41—O31vi1.305 (3)
Na2—Na2xi3.3569 (2)O41—O41xvii1.475 (6)
Na2—Na2xii3.3569 (2)O41—Na1xvi2.493 (2)
O1—Na2xii2.3537 (7)O41—H311.088 (19)
O2—Na1xiii2.3950 (7)
O3—C1—O2120.80 (12)O1—Na2—Na2xii44.510 (18)
O3—C1—O1119.23 (12)O1viii—Na2—Na2xii135.490 (18)
O2—C1—O1119.96 (12)O3ix—Na2—Na2xii44.883 (17)
O31i—Na1—O31169.02 (12)O3v—Na2—Na2xii135.117 (17)
O31i—Na1—O2ii98.60 (6)O11x—Na2—Na2xii65.42 (3)
O31—Na1—O2ii88.73 (6)O11i—Na2—Na2xii114.58 (3)
O31i—Na1—O2iii88.73 (6)O12v—Na2—Na2xii114.33 (3)
O31—Na1—O2iii98.60 (6)O12ix—Na2—Na2xii65.67 (3)
O2ii—Na1—O2iii96.51 (4)Na2xi—Na2—Na2xii180
O31i—Na1—O11i91.47 (7)C1—O1—Na2xii117.59 (5)
O31—Na1—O11i79.32 (7)C1—O1—Na2117.59 (5)
O2ii—Na1—O11i161.30 (4)Na2xii—O1—Na290.98 (4)
O2iii—Na1—O11i99.45 (4)C1—O2—Na1xiii117.51 (5)
O31i—Na1—O1179.32 (7)C1—O2—Na1xiv117.51 (5)
O31—Na1—O1191.47 (7)Na1xiii—O2—Na1xiv88.98 (4)
O2ii—Na1—O1199.45 (4)C1—O3—Na2xv116.56 (5)
O2iii—Na1—O11161.30 (4)C1—O3—Na2i116.56 (5)
O11i—Na1—O1166.86 (7)Na2xv—O3—Na2i90.23 (3)
O31i—Na1—O12iv65.80 (7)O12iv—O11—O11iv90.62 (15)
O31—Na1—O12iv106.37 (7)O12iv—O11—O1259.63 (17)
O2ii—Na1—O12iv89.35 (4)O11iv—O11—O1230.99 (8)
O2iii—Na1—O12iv154.47 (4)O12iv—O11—Na181.46 (17)
O11i—Na1—O12iv80.42 (6)O11iv—O11—Na1115.81 (3)
O11—Na1—O12iv18.13 (5)O12—O11—Na1107.41 (10)
O31i—Na1—O12v106.37 (7)O12iv—O11—Na2i81.62 (18)
O31—Na1—O12v65.80 (7)O11iv—O11—Na2i114.58 (3)
O2ii—Na1—O12v154.47 (4)O12—O11—Na2i106.49 (11)
O2iii—Na1—O12v89.35 (4)Na1—O11—Na2i126.65 (6)
O11i—Na1—O12v18.13 (5)O12iv—O11—H11156.9 (12)
O11—Na1—O12v80.42 (6)O11iv—O11—H1171.8 (13)
O12iv—Na1—O12v96.01 (8)O12—O11—H11101.7 (13)
O31i—Na1—O41v16.45 (8)Na1—O11—H11119.4 (11)
O31—Na1—O41v158.40 (8)Na2i—O11—H1192.0 (11)
O2ii—Na1—O41v112.87 (7)O11iv—O12—O12iv89.38 (15)
O2iii—Na1—O41v79.36 (6)O11iv—O12—O1158.38 (16)
O11i—Na1—O41v79.82 (8)O12iv—O12—O1130.99 (8)
O11—Na1—O41v85.48 (7)O11iv—O12—Na1xvi80.41 (17)
O12iv—Na1—O41v75.49 (7)O12iv—O12—Na1xvi115.51 (3)
O12v—Na1—O41v92.62 (8)O11—O12—Na1xvi106.32 (10)
O31i—Na1—O41158.40 (8)O11iv—O12—Na2xv81.06 (17)
O31—Na1—O4116.45 (8)O12iv—O12—Na2xv114.33 (3)
O2ii—Na1—O4179.36 (6)O11—O12—Na2xv105.71 (10)
O2iii—Na1—O41112.87 (7)Na1xvi—O12—Na2xv126.16 (6)
O11i—Na1—O4185.48 (7)O11iv—O12—H12157.9 (10)
O11—Na1—O4179.82 (8)O12iv—O12—H1274.4 (10)
O12iv—Na1—O4192.62 (8)O11—O12—H12104.4 (10)
O12v—Na1—O4175.49 (7)Na1xvi—O12—H12119.9 (10)
O41v—Na1—O41162.38 (15)Na2xv—O12—H1291.9 (10)
O31i—Na1—O31vi172.81 (2)O41—O31—O31vi112.1 (4)
O31—Na1—O31vi17.73 (10)O41—O31—O31iv30.5 (4)
O2ii—Na1—O31vi79.53 (6)O31vi—O31—O31iv90
O2iii—Na1—O31vi84.60 (5)O41—O31—O41xvii89.2 (4)
O11i—Na1—O31vi92.29 (7)O31vi—O31—O41xvii30.08 (18)
O11—Na1—O31vi107.80 (6)O31iv—O31—O41xvii62.21 (12)
O12iv—Na1—O31vi120.92 (6)O41—O31—O31xvii61.0 (3)
O12v—Na1—O31vi76.31 (6)O31vi—O31—O31xvii54.64 (18)
O41v—Na1—O31vi160.64 (6)O31iv—O31—O31xvii35.36 (18)
O41—Na1—O31vi28.36 (7)O41xvii—O31—O31xvii28.24 (15)
O31i—Na1—O31vii17.73 (10)O41—O31—Na189.9 (4)
O31—Na1—O31vii172.81 (2)O31vi—O31—Na1104.7 (4)
O2ii—Na1—O31vii84.60 (5)O31iv—O31—Na1116.57 (6)
O2iii—Na1—O31vii79.53 (6)O41xvii—O31—Na1125.88 (19)
O11i—Na1—O31vii107.80 (6)O31xvii—O31—Na1120.8 (3)
O11—Na1—O31vii92.29 (7)O41—O31—Na1xviii142.4 (4)
O12iv—Na1—O31vii76.31 (6)O31vi—O31—Na1xviii57.6 (3)
O12v—Na1—O31vii120.92 (6)O31iv—O31—Na1xviii112.97 (5)
O41v—Na1—O31vii28.36 (7)O41xvii—O31—Na1xviii65.18 (16)
O41—Na1—O31vii160.64 (6)O31xvii—O31—Na1xviii90.5 (2)
O31vi—Na1—O31vii156.09 (11)Na1—O31—Na1xviii127.11 (9)
O1—Na2—O1viii180O41—O31—H3175.0 (11)
O1—Na2—O3ix81.77 (3)O31vi—O31—H31135.2 (12)
O1viii—Na2—O3ix98.23 (3)O31iv—O31—H3175.5 (10)
O1—Na2—O3v98.23 (3)O41xvii—O31—H31112.1 (11)
O1viii—Na2—O3v81.77 (3)O31xvii—O31—H31101.9 (10)
O3ix—Na2—O3v180.00 (6)Na1—O31—H31119.7 (11)
O1—Na2—O11x91.39 (4)Na1xviii—O31—H3189.2 (11)
O1viii—Na2—O11x88.61 (4)O31iv—O41—O31119.0 (7)
O3ix—Na2—O11x81.17 (4)O31iv—O41—O31xvii37.8 (3)
O3v—Na2—O11x98.83 (4)O31—O41—O31xvii90.8 (4)
O1—Na2—O11i88.61 (4)O31iv—O41—O31vi90.8 (4)
O1viii—Na2—O11i91.39 (4)O31—O41—O31vi37.8 (3)
O3ix—Na2—O11i98.83 (4)O31xvii—O41—O31vi55.6 (2)
O3v—Na2—O11i81.17 (4)O31iv—O41—O41xvii62.2 (3)
O11x—Na2—O11i180.00 (8)O31—O41—O41xvii62.2 (3)
O1—Na2—O12v99.79 (4)O31xvii—O41—O41xvii28.59 (13)
O1viii—Na2—O12v80.21 (4)O31vi—O41—O41xvii28.59 (13)
O3ix—Na2—O12v87.33 (4)O31iv—O41—Na1151.5 (4)
O3v—Na2—O12v92.67 (4)O31—O41—Na173.6 (3)
O11x—Na2—O12v162.68 (4)O31xvii—O41—Na1124.48 (19)
O11i—Na2—O12v17.32 (4)O31vi—O41—Na186.46 (15)
O1—Na2—O12ix80.21 (4)O41xvii—O41—Na1111.5 (2)
O1viii—Na2—O12ix99.79 (4)O31iv—O41—Na1xvi73.6 (3)
O3ix—Na2—O12ix92.67 (4)O31—O41—Na1xvi151.5 (4)
O3v—Na2—O12ix87.33 (4)O31xvii—O41—Na1xvi86.46 (15)
O11x—Na2—O12ix17.32 (4)O31vi—O41—Na1xvi124.48 (19)
O11i—Na2—O12ix162.68 (4)O41xvii—O41—Na1xvi111.5 (2)
O12v—Na2—O12ix180Na1—O41—Na1xvi84.64 (10)
O1—Na2—Na2xi135.490 (18)O31iv—O41—H3198.7 (10)
O1viii—Na2—Na2xi44.510 (18)O31—O41—H3166.2 (10)
O3ix—Na2—Na2xi135.117 (17)O31xvii—O41—H31111.4 (10)
O3v—Na2—Na2xi44.883 (17)O31vi—O41—H3193.7 (10)
O11x—Na2—Na2xi114.58 (3)O41xvii—O41—H3197.5 (10)
O11i—Na2—Na2xi65.42 (3)Na1—O41—H31109.7 (9)
O12v—Na2—Na2xi65.67 (3)Na1xvi—O41—H31140.5 (10)
O12ix—Na2—Na2xi114.33 (3)
O3—C1—O1—Na2xii126.43 (5)O12v—Na1—O31—O41xvii147.5 (2)
O2—C1—O1—Na2xii53.57 (5)O41v—Na1—O31—O41xvii145.0 (2)
O3—C1—O1—Na2126.43 (5)O41—Na1—O31—O41xvii89.0 (4)
O2—C1—O1—Na253.57 (5)O31vi—Na1—O31—O41xvii23.9 (2)
O1viii—Na2—O1—C116E1 (10)O31vii—Na1—O31—O41xvii12.2 (6)
O3ix—Na2—O1—C1151.17 (8)O31i—Na1—O31—O31xvii133.0 (3)
O3v—Na2—O1—C128.83 (8)O2ii—Na1—O31—O31xvii0.8 (3)
O11x—Na2—O1—C170.30 (8)O2iii—Na1—O31—O31xvii95.6 (3)
O11i—Na2—O1—C1109.70 (8)O11i—Na1—O31—O31xvii166.4 (3)
O12v—Na2—O1—C1122.99 (8)O11—Na1—O31—O31xvii100.2 (3)
O12ix—Na2—O1—C157.01 (8)O12iv—Na1—O31—O31xvii89.8 (3)
Na2xi—Na2—O1—C157.89 (8)O12v—Na1—O31—O31xvii179.1 (3)
Na2xii—Na2—O1—C1122.11 (8)O41v—Na1—O31—O31xvii178.4 (2)
O1viii—Na2—O1—Na2xii4E1 (10)O41—Na1—O31—O31xvii55.6 (4)
O3ix—Na2—O1—Na2xii29.06 (3)O31vi—Na1—O31—O31xvii57.3 (3)
O3v—Na2—O1—Na2xii150.94 (3)O31vii—Na1—O31—O31xvii21.2 (7)
O11x—Na2—O1—Na2xii51.81 (4)O31i—Na1—O31—Na1xviii109.49 (11)
O11i—Na2—O1—Na2xii128.19 (4)O2ii—Na1—O31—Na1xviii118.35 (11)
O12v—Na2—O1—Na2xii114.90 (4)O2iii—Na1—O31—Na1xviii21.96 (11)
O12ix—Na2—O1—Na2xii65.10 (4)O11i—Na1—O31—Na1xviii76.11 (11)
Na2xi—Na2—O1—Na2xii180O11—Na1—O31—Na1xviii142.23 (11)
O3—C1—O2—Na1xiii52.20 (5)O12iv—Na1—O31—Na1xviii152.70 (10)
O1—C1—O2—Na1xiii127.80 (5)O12v—Na1—O31—Na1xviii63.42 (10)
O3—C1—O2—Na1xiv52.20 (5)O41v—Na1—O31—Na1xviii60.8 (3)
O1—C1—O2—Na1xiv127.80 (5)O41—Na1—O31—Na1xviii173.1 (4)
O2—C1—O3—Na2xv127.61 (4)O31vi—Na1—O31—Na1xviii60.21 (19)
O1—C1—O3—Na2xv52.39 (4)O31vii—Na1—O31—Na1xviii96.3 (5)
O2—C1—O3—Na2i127.61 (4)O31vi—O31—O41—O31iv46.3 (11)
O1—C1—O3—Na2i52.39 (4)O41xvii—O31—O41—O31iv26.3 (6)
O31i—Na1—O11—O12iv40.11 (16)O31xvii—O31—O41—O31iv26.3 (6)
O31—Na1—O11—O12iv145.91 (16)Na1—O31—O41—O31iv152.2 (6)
O2ii—Na1—O11—O12iv56.95 (16)Na1xviii—O31—O41—O31iv18.8 (12)
O2iii—Na1—O11—O12iv91.3 (2)O31vi—O31—O41—O31xvii20.0 (5)
O11i—Na1—O11—O12iv136.36 (19)O31iv—O31—O41—O31xvii26.3 (6)
O12v—Na1—O11—O12iv148.94 (14)O41xvii—O31—O41—O31xvii0
O41v—Na1—O11—O12iv55.51 (16)Na1—O31—O41—O31xvii125.88 (19)
O41—Na1—O11—O12iv134.24 (17)Na1xviii—O31—O41—O31xvii45.1 (6)
O31vi—Na1—O11—O12iv138.90 (16)O31iv—O31—O41—O31vi46.3 (11)
O31vii—Na1—O11—O12iv27.96 (16)O41xvii—O31—O41—O31vi20.0 (5)
O31i—Na1—O11—O11iv126.64 (6)O31xvii—O31—O41—O31vi20.0 (5)
O31—Na1—O11—O11iv59.37 (6)Na1—O31—O41—O31vi105.9 (6)
O2ii—Na1—O11—O11iv29.58 (3)Na1xviii—O31—O41—O31vi65.1 (6)
O2iii—Na1—O11—O11iv177.79 (12)O31vi—O31—O41—O41xvii20.0 (5)
O11i—Na1—O11—O11iv137.11 (7)O31iv—O31—O41—O41xvii26.3 (6)
O12iv—Na1—O11—O11iv86.54 (15)O31xvii—O31—O41—O41xvii0
O12v—Na1—O11—O11iv124.53 (4)Na1—O31—O41—O41xvii125.88 (19)
O41v—Na1—O11—O11iv142.04 (7)Na1xviii—O31—O41—O41xvii45.1 (6)
O41—Na1—O11—O11iv47.70 (6)O31vi—O31—O41—Na1105.9 (6)
O31vi—Na1—O11—O11iv52.36 (6)O31iv—O31—O41—Na1152.2 (6)
O31vii—Na1—O11—O11iv114.49 (5)O41xvii—O31—O41—Na1125.88 (19)
O31i—Na1—O11—O1294.45 (11)O31xvii—O31—O41—Na1125.88 (19)
O31—Na1—O11—O1291.56 (11)Na1xviii—O31—O41—Na1171.0 (6)
O2ii—Na1—O11—O122.61 (10)O31vi—O31—O41—Na1xvi64.0 (11)
O2iii—Na1—O11—O12145.60 (12)O31iv—O31—O41—Na1xvi110.3 (11)
O11i—Na1—O11—O12169.30 (14)O41xvii—O31—O41—Na1xvi84.0 (8)
O12iv—Na1—O11—O1254.35 (16)O31xvii—O31—O41—Na1xvi84.0 (8)
O12v—Na1—O11—O12156.72 (10)Na1—O31—O41—Na1xvi41.9 (8)
O41v—Na1—O11—O12109.85 (11)Na1xviii—O31—O41—Na1xvi129.1 (6)
O41—Na1—O11—O1279.89 (11)O31i—Na1—O41—O31iv89.0 (8)
O31vi—Na1—O11—O1284.55 (11)O31—Na1—O41—O31iv121.3 (11)
O31vii—Na1—O11—O1282.30 (10)O2ii—Na1—O41—O31iv2.5 (8)
O31i—Na1—O11—Na2i32.71 (9)O2iii—Na1—O41—O31iv90.1 (8)
O31—Na1—O11—Na2i141.28 (9)O11i—Na1—O41—O31iv171.5 (8)
O2ii—Na1—O11—Na2i129.77 (7)O11—Na1—O41—O31iv104.3 (8)
O2iii—Na1—O11—Na2i18.4 (2)O12iv—Na1—O41—O31iv91.4 (8)
O11i—Na1—O11—Na2i63.54 (6)O12v—Na1—O41—O31iv173.1 (8)
O12iv—Na1—O11—Na2i72.81 (16)O41v—Na1—O41—O31iv138.2 (8)
O12v—Na1—O11—Na2i76.12 (7)O31vi—Na1—O41—O31iv85.1 (9)
O41v—Na1—O11—Na2i17.31 (9)O31vii—Na1—O41—O31iv37.1 (10)
O41—Na1—O11—Na2i152.95 (10)O31i—Na1—O41—O31149.7 (4)
O31vi—Na1—O11—Na2i148.29 (8)O2ii—Na1—O41—O31123.8 (4)
O31vii—Na1—O11—Na2i44.86 (9)O2iii—Na1—O41—O3131.2 (4)
O12iv—O11—O12—O11iv180O11i—Na1—O41—O3167.2 (4)
Na1—O11—O12—O11iv111.36 (14)O11—Na1—O41—O31134.4 (4)
Na2i—O11—O12—O11iv110.46 (15)O12iv—Na1—O41—O31147.3 (4)
O11iv—O11—O12—O12iv180O12v—Na1—O41—O3151.8 (3)
Na1—O11—O12—O12iv68.64 (14)O41v—Na1—O41—O31100.5 (4)
Na2i—O11—O12—O12iv69.54 (15)O31vi—Na1—O41—O3136.2 (3)
O12iv—O11—O12—Na1xvi112.59 (14)O31vii—Na1—O41—O31158.43 (12)
O11iv—O11—O12—Na1xvi67.41 (14)O31i—Na1—O41—O31xvii131.0 (3)
Na1—O11—O12—Na1xvi43.94 (9)O31—Na1—O41—O31xvii79.4 (4)
Na2i—O11—O12—Na1xvi177.88 (6)O2ii—Na1—O41—O31xvii44.5 (2)
O12iv—O11—O12—Na2xv111.27 (14)O2iii—Na1—O41—O31xvii48.2 (2)
O11iv—O11—O12—Na2xv68.73 (14)O11i—Na1—O41—O31xvii146.5 (2)
Na1—O11—O12—Na2xv179.92 (6)O11—Na1—O41—O31xvii146.2 (2)
Na2i—O11—O12—Na2xv41.74 (8)O12iv—Na1—O41—O31xvii133.3 (2)
O31i—Na1—O31—O4177.4 (4)O12v—Na1—O41—O31xvii131.2 (2)
O2ii—Na1—O31—O4154.7 (4)O41v—Na1—O41—O31xvii179.9 (2)
O2iii—Na1—O31—O41151.1 (3)O31vi—Na1—O41—O31xvii43.2 (2)
O11i—Na1—O31—O41110.8 (4)O31vii—Na1—O41—O31xvii79.1 (4)
O11—Na1—O31—O4144.7 (4)O31i—Na1—O41—O31vi174.12 (16)
O12iv—Na1—O31—O4134.2 (4)O31—Na1—O41—O31vi36.2 (3)
O12v—Na1—O31—O41123.5 (4)O2ii—Na1—O41—O31vi87.63 (14)
O41v—Na1—O31—O41126.1 (5)O2iii—Na1—O41—O31vi5.00 (16)
O31vi—Na1—O31—O41112.9 (5)O11i—Na1—O41—O31vi103.36 (14)
O31vii—Na1—O31—O4176.8 (6)O11—Na1—O41—O31vi170.63 (15)
O31i—Na1—O31—O31vi169.7 (2)O12iv—Na1—O41—O31vi176.47 (14)
O2ii—Na1—O31—O31vi58.1 (2)O12v—Na1—O41—O31vi88.00 (14)
O2iii—Na1—O31—O31vi38.2 (2)O41v—Na1—O41—O31vi136.75 (14)
O11i—Na1—O31—O31vi136.3 (2)O31vii—Na1—O41—O31vi122.2 (3)
O11—Na1—O31—O31vi157.6 (2)O31i—Na1—O41—O41xvii159.97 (19)
O12iv—Na1—O31—O31vi147.1 (2)O31—Na1—O41—O41xvii50.4 (3)
O12v—Na1—O31—O31vi123.6 (2)O2ii—Na1—O41—O41xvii73.5 (2)
O41v—Na1—O31—O31vi121.0 (2)O2iii—Na1—O41—O41xvii19.2 (2)
O41—Na1—O31—O31vi112.9 (5)O11i—Na1—O41—O41xvii117.5 (2)
O31vii—Na1—O31—O31vi36.1 (7)O11—Na1—O41—O41xvii175.2 (2)
O31i—Na1—O31—O31iv92.76 (3)O12iv—Na1—O41—O41xvii162.3 (2)
O2ii—Na1—O31—O31iv39.40 (4)O12v—Na1—O41—O41xvii102.1 (2)
O2iii—Na1—O31—O31iv135.79 (3)O41v—Na1—O41—O41xvii150.9 (2)
O11i—Na1—O31—O31iv126.13 (5)O31vi—Na1—O41—O41xvii14.15 (18)
O11—Na1—O31—O31iv60.01 (5)O31vii—Na1—O41—O41xvii108.1 (3)
O12iv—Na1—O31—O31iv49.54 (6)O31i—Na1—O41—Na1xvi49.0 (3)
O12v—Na1—O31—O31iv138.83 (7)O31—Na1—O41—Na1xvi161.3 (4)
O41v—Na1—O31—O31iv141.4 (2)O2ii—Na1—O41—Na1xvi37.51 (6)
O41—Na1—O31—O31iv15.3 (3)O2iii—Na1—O41—Na1xvi130.14 (5)
O31vi—Na1—O31—O31iv97.5 (2)O11i—Na1—O41—Na1xvi131.51 (8)
O31vii—Na1—O31—O31iv61.5 (5)O11—Na1—O41—Na1xvi64.23 (7)
O31i—Na1—O31—O41xvii166.4 (2)O12iv—Na1—O41—Na1xvi51.34 (8)
O2ii—Na1—O31—O41xvii34.2 (2)O12v—Na1—O41—Na1xvi146.87 (9)
O2iii—Na1—O31—O41xvii62.2 (2)O41v—Na1—O41—Na1xvi98.11 (7)
O11i—Na1—O31—O41xvii160.2 (2)O31vi—Na1—O41—Na1xvi125.13 (18)
O11—Na1—O31—O41xvii133.7 (2)O31vii—Na1—O41—Na1xvi2.9 (4)
O12iv—Na1—O31—O41xvii123.2 (2)
Symmetry codes: (i) x+1/2, y, z+1/2; (ii) x, y1/2, z+1/2; (iii) x+1/2, y1/2, z; (iv) x, y, z; (v) x+1/2, y, z+1/2; (vi) x, y, z; (vii) x+1/2, y, z+1/2; (viii) x+1/2, y+1/2, z; (ix) x, y+1/2, z1/2; (x) x, y+1/2, z1/2; (xi) x+1/2, y+1/2, z; (xii) x1/2, y+1/2, z; (xiii) x, y+1/2, z+1/2; (xiv) x1/2, y+1/2, z; (xv) x, y+1/2, z+1/2; (xvi) x1/2, y, z+1/2; (xvii) x, y, z; (xviii) x+1/2, y, z1/2.
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.962 (18)1.652 (18)2.5973 (18)166.8 (18)
O12—H12···O2xix1.002 (19)1.626 (19)2.6141 (18)167.5 (17)
O31—H31···O3ix1.031 (19)1.556 (19)2.571 (3)167.2 (18)
O41—H31···O3ix1.088 (19)1.556 (19)2.540 (3)147.4 (15)
Symmetry codes: (ix) x, y+1/2, z1/2; (xix) x, y+1/2, z+1/2.
(m23) top
Crystal data top
CH3Na2O6F(000) = 632
Mr = 157.01Dx = 2.156 Mg m3
Orthorhombic, CmcaMo Kα radiation, λ = 0.71073 Å
Hall symbol: -C 2bc 2Cell parameters from 2018 reflections
a = 6.7030 (3) Åθ = 1.0–27.5°
b = 15.7388 (7) ŵ = 0.36 mm1
c = 9.1684 (4) ÅT = 250 K
V = 967.24 (7) Å3Needle, colourless
Z = 80.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
599 independent reflections
Radiation source: Enraf Nonius FR590514 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.043
ϕ and ω scans with κ offsetsθmax = 27.5°, θmin = 3.4°
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
h = 87
Tmin = 0.992, Tmax = 1.012k = 2017
3593 measured reflectionsl = 1111
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.026All H-atom parameters refined
wR(F2) = 0.065 w = 1/[σ2(Fo2) + (0.0356P)2 + 0.119P]
where P = (Fo2 + 2Fc2)/3
S = 1.08(Δ/σ)max = 0.002
599 reflectionsΔρmax = 0.33 e Å3
83 parametersΔρmin = 0.27 e Å3
0 restraintsExtinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4
Primary atom site location: structure-invariant direct methodsExtinction coefficient: 0.0232 (17)
Crystal data top
CH3Na2O6V = 967.24 (7) Å3
Mr = 157.01Z = 8
Orthorhombic, CmcaMo Kα radiation
a = 6.7030 (3) ŵ = 0.36 mm1
b = 15.7388 (7) ÅT = 250 K
c = 9.1684 (4) Å0.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
599 independent reflections
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
514 reflections with I > 2σ(I)
Tmin = 0.992, Tmax = 1.012Rint = 0.043
3593 measured reflections
Refinement top
R[F2 > 2σ(F2)] = 0.0260 restraints
wR(F2) = 0.065All H-atom parameters refined
S = 1.08Δρmax = 0.33 e Å3
599 reflectionsΔρmin = 0.27 e Å3
83 parameters
Special details top

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.

Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
C100.33773 (6)0.25078 (9)0.0138 (2)
Na10.250.01096 (2)0.250.02384 (11)
Na20.250.2500.02004 (10)
O100.26797 (4)0.17708 (7)0.01831 (16)
O200.40965 (4)0.18332 (6)0.01896 (16)
O300.33465 (4)0.39034 (6)0.01910 (16)
O110.09432 (15)0.13832 (6)0.33896 (12)0.0245 (2)0.5
O120.09525 (15)0.11367 (6)0.41043 (11)0.0236 (2)0.5
O310.0926 (3)0.02463 (10)0.0151 (2)0.0262 (5)0.2681 (11)
O4100.03414 (11)0.0536 (2)0.0360 (6)0.464 (2)
H110.053 (3)0.1810 (11)0.2714 (18)0.052 (6)*0.5
H120.059 (2)0.0991 (9)0.5078 (15)0.030 (4)*0.5
H310.050 (3)0.0808 (10)0.0147 (15)0.038 (5)*0.5
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C10.0112 (4)0.0162 (4)0.0140 (4)000.0002 (3)
Na10.0210 (2)0.01843 (19)0.0321 (2)00.00337 (15)0
Na20.0170 (2)0.0238 (2)0.0193 (2)0.00044 (14)0.00073 (14)0.00317 (14)
O10.0239 (3)0.0158 (3)0.0153 (3)000.0022 (2)
O20.0249 (3)0.0150 (3)0.0170 (3)000.0017 (2)
O30.0260 (3)0.0175 (3)0.0138 (3)000.0006 (2)
O110.0256 (5)0.0240 (5)0.0239 (5)0.0046 (4)0.0063 (4)0.0032 (4)
O120.0253 (5)0.0262 (5)0.0194 (5)0.0071 (4)0.0008 (4)0.0010 (4)
O310.0254 (9)0.0244 (12)0.0288 (10)0.0052 (7)0.0101 (9)0.0051 (9)
O410.0692 (16)0.0181 (9)0.0207 (10)000.0009 (7)
Geometric parameters (Å, º) top
C1—O31.2805 (10)O2—Na1xiv2.3925 (5)
C1—O11.2892 (11)O3—Na2xv2.3652 (4)
C1—O21.2899 (11)O3—Na2iii2.3652 (4)
Na1—O2i2.3925 (5)O11—O12iv0.7615 (13)
Na1—O2ii2.3925 (5)O11—O11iv1.264 (2)
Na1—O11iii2.4025 (10)O11—O121.4814 (14)
Na1—O112.4025 (10)O11—Na2iii2.5217 (10)
Na1—O31iii2.407 (2)O11—H110.954 (17)
Na1—O312.407 (2)O12—O11iv0.7615 (13)
Na1—O12iv2.4191 (10)O12—O12iv1.277 (2)
Na1—O12v2.4191 (10)O12—Na1xvi2.4191 (10)
Na1—O41v2.4868 (14)O12—Na2xv2.5208 (10)
Na1—O412.4868 (14)O12—H120.953 (14)
Na1—O31vi2.708 (2)O31—O410.729 (2)
Na1—O31vii2.708 (2)O31—O31vi0.823 (3)
Na2—O12.3503 (4)O31—O31iv1.242 (4)
Na2—O1viii2.3503 (4)O31—O41xvii1.280 (2)
Na2—O3ix2.3652 (4)O31—O31xvii1.490 (4)
Na2—O3v2.3652 (4)O31—Na1xviii2.708 (2)
Na2—O12v2.5208 (10)O31—H310.969 (16)
Na2—O12ix2.5208 (10)O41—O31iv0.729 (2)
Na2—O11x2.5217 (10)O41—O31xvii1.280 (2)
Na2—O11iii2.5217 (10)O41—O31vi1.280 (2)
Na2—Na2xi3.3515 (2)O41—O41xvii1.456 (4)
Na2—Na2xii3.3515 (2)O41—Na1xvi2.4868 (14)
O1—Na2xi2.3503 (4)O41—H311.021 (16)
O2—Na1xiii2.3925 (5)
O3—C1—O1119.44 (8)O1—Na2—Na2xii135.479 (11)
O3—C1—O2120.82 (8)O1viii—Na2—Na2xii44.521 (11)
O1—C1—O2119.74 (8)O3ix—Na2—Na2xii135.114 (10)
O2i—Na1—O2ii96.42 (3)O3v—Na2—Na2xii44.886 (10)
O2i—Na1—O11iii161.26 (3)O12v—Na2—Na2xii65.70 (2)
O2ii—Na1—O11iii99.50 (3)O12ix—Na2—Na2xii114.30 (2)
O2i—Na1—O1199.50 (3)O11x—Na2—Na2xii114.45 (2)
O2ii—Na1—O11161.26 (3)O11iii—Na2—Na2xii65.55 (2)
O11iii—Na1—O1166.91 (5)Na2xi—Na2—Na2xii180
O2i—Na1—O31iii97.93 (5)C1—O1—Na2xi117.68 (3)
O2ii—Na1—O31iii88.92 (5)C1—O1—Na2117.68 (3)
O11iii—Na1—O31iii92.22 (5)Na2xi—O1—Na290.96 (2)
O11—Na1—O31iii79.17 (5)C1—O2—Na1xiii117.54 (3)
O2i—Na1—O3188.92 (5)C1—O2—Na1xiv117.54 (3)
O2ii—Na1—O3197.93 (5)Na1xiii—O2—Na1xiv88.92 (2)
O11iii—Na1—O3179.17 (5)C1—O3—Na2xv116.49 (3)
O11—Na1—O3192.22 (5)C1—O3—Na2iii116.49 (3)
O31iii—Na1—O31169.75 (8)Na2xv—O3—Na2iii90.23 (2)
O2i—Na1—O12iv89.41 (3)O12iv—O11—O11iv90.47 (11)
O2ii—Na1—O12iv154.29 (3)O12iv—O11—O1259.54 (12)
O11iii—Na1—O12iv80.51 (4)O11iv—O11—O1230.93 (5)
O11—Na1—O12iv18.17 (3)O12iv—O11—Na182.15 (11)
O31iii—Na1—O12iv65.44 (5)O11iv—O11—Na1115.74 (2)
O31—Na1—O12iv107.23 (5)O12—O11—Na1107.71 (6)
O2i—Na1—O12v154.29 (3)O12iv—O11—Na2iii81.25 (11)
O2ii—Na1—O12v89.41 (3)O11iv—O11—Na2iii114.45 (2)
O11iii—Na1—O12v18.17 (3)O12—O11—Na2iii106.17 (6)
O11—Na1—O12v80.51 (4)Na1—O11—Na2iii126.91 (4)
O31iii—Na1—O12v107.23 (5)O12iv—O11—H11156.8 (12)
O31—Na1—O12v65.44 (5)O11iv—O11—H1173.2 (13)
O12iv—Na1—O12v96.14 (5)O12—O11—H11102.9 (13)
O2i—Na1—O41v112.63 (4)Na1—O11—H11119.5 (11)
O2ii—Na1—O41v79.10 (4)Na2iii—O11—H1190.5 (11)
O11iii—Na1—O41v80.26 (5)O11iv—O12—O12iv89.53 (11)
O11—Na1—O41v85.67 (4)O11iv—O12—O1158.59 (12)
O31iii—Na1—O41v17.04 (5)O12iv—O12—O1130.93 (5)
O31—Na1—O41v158.41 (5)O11iv—O12—Na1xvi79.68 (11)
O12iv—Na1—O41v75.56 (4)O12iv—O12—Na1xvi115.39 (2)
O12v—Na1—O41v93.06 (4)O11—O12—Na1xvi105.89 (6)
O2i—Na1—O4179.10 (4)O11iv—O12—Na2xv81.38 (11)
O2ii—Na1—O41112.63 (4)O12iv—O12—Na2xv114.30 (2)
O11iii—Na1—O4185.67 (4)O11—O12—Na2xv105.91 (6)
O11—Na1—O4180.26 (5)Na1xvi—O12—Na2xv126.19 (4)
O31iii—Na1—O41158.41 (5)O11iv—O12—H12158.0 (9)
O31—Na1—O4117.04 (5)O12iv—O12—H1275.4 (9)
O12iv—Na1—O4193.06 (4)O11—O12—H12105.1 (9)
O12v—Na1—O4175.56 (4)Na1xvi—O12—H12121.1 (9)
O41v—Na1—O41163.13 (8)Na2xv—O12—H1290.2 (9)
O2i—Na1—O31vi79.55 (4)O41—O31—O31vi110.9 (2)
O2ii—Na1—O31vi84.58 (4)O41—O31—O31iv31.7 (2)
O11iii—Na1—O31vi92.12 (5)O31vi—O31—O31iv90
O11—Na1—O31vi107.94 (4)O41—O31—O41xvii88.5 (3)
O31iii—Na1—O31vi172.707 (17)O31vi—O31—O41xvii32.18 (14)
O31—Na1—O31vi17.26 (7)O31iv—O31—O41xvii60.98 (10)
O12iv—Na1—O31vi121.12 (4)O41—O31—O31xvii59.2 (2)
O12v—Na1—O31vi76.08 (4)O31vi—O31—O31xvii56.45 (14)
O41v—Na1—O31vi160.52 (5)O31iv—O31—O31xvii33.55 (14)
O41—Na1—O31vi28.11 (5)O41xvii—O31—O31xvii29.30 (9)
O2i—Na1—O31vii84.58 (4)O41—O31—Na187.7 (2)
O2ii—Na1—O31vii79.55 (4)O31vi—O31—Na1102.6 (3)
O11iii—Na1—O31vii107.94 (4)O31iv—O31—Na1115.99 (5)
O11—Na1—O31vii92.12 (5)O41xvii—O31—Na1126.03 (12)
O31iii—Na1—O31vii17.26 (7)O31xvii—O31—Na1119.03 (18)
O31—Na1—O31vii172.707 (17)O41—O31—Na1xviii143.9 (2)
O12iv—Na1—O31vii76.08 (4)O31vi—O31—Na1xviii60.2 (2)
O12v—Na1—O31vii121.12 (4)O31iv—O31—Na1xviii112.92 (4)
O41v—Na1—O31vii28.11 (5)O41xvii—O31—Na1xviii66.27 (11)
O41—Na1—O31vii160.52 (5)O31xvii—O31—Na1xviii92.85 (17)
O31vi—Na1—O31vii156.13 (7)Na1—O31—Na1xviii127.85 (8)
O1—Na2—O1viii180O41—O31—H3172.3 (10)
O1—Na2—O3ix81.736 (16)O31vi—O31—H31139.8 (9)
O1viii—Na2—O3ix98.264 (16)O31iv—O31—H3172.8 (10)
O1—Na2—O3v98.264 (16)O41xvii—O31—H31112.1 (9)
O1viii—Na2—O3v81.736 (16)O31xvii—O31—H31100.1 (10)
O3ix—Na2—O3v180.00 (3)Na1—O31—H31117.6 (9)
O1—Na2—O12v99.83 (3)Na1xviii—O31—H3192.9 (9)
O1viii—Na2—O12v80.17 (3)O31iv—O41—O31116.7 (4)
O3ix—Na2—O12v87.16 (3)O31iv—O41—O31xvii36.96 (19)
O3v—Na2—O12v92.84 (3)O31—O41—O31xvii91.5 (3)
O1—Na2—O12ix80.17 (3)O31iv—O41—O31vi91.5 (3)
O1viii—Na2—O12ix99.83 (3)O31—O41—O31vi36.96 (19)
O3ix—Na2—O12ix92.84 (3)O31xvii—O41—O31vi58.0 (2)
O3v—Na2—O12ix87.16 (3)O31iv—O41—O41xvii61.5 (2)
O12v—Na2—O12ix180O31—O41—O41xvii61.5 (2)
O1—Na2—O11x91.46 (3)O31xvii—O41—O41xvii30.05 (11)
O1viii—Na2—O11x88.54 (3)O31vi—O41—O41xvii30.05 (11)
O3ix—Na2—O11x81.41 (3)O31iv—O41—Na1153.3 (2)
O3v—Na2—O11x98.59 (3)O31—O41—Na175.3 (2)
O12v—Na2—O11x162.63 (3)O31xvii—O41—Na1125.26 (12)
O12ix—Na2—O11x17.37 (3)O31vi—O41—Na185.62 (11)
O1—Na2—O11iii88.54 (3)O41xvii—O41—Na1112.35 (11)
O1viii—Na2—O11iii91.46 (3)O31iv—O41—Na1xvi75.3 (2)
O3ix—Na2—O11iii98.59 (3)O31—O41—Na1xvi153.3 (2)
O3v—Na2—O11iii81.41 (3)O31xvii—O41—Na1xvi85.62 (11)
O12v—Na2—O11iii17.37 (3)O31vi—O41—Na1xvi125.26 (12)
O12ix—Na2—O11iii162.63 (3)O41xvii—O41—Na1xvi112.35 (11)
O11x—Na2—O11iii180.00 (3)Na1—O41—Na1xvi84.73 (6)
O1—Na2—Na2xi44.521 (11)O31iv—O41—H3197.4 (9)
O1viii—Na2—Na2xi135.479 (11)O31—O41—H3164.8 (9)
O3ix—Na2—Na2xi44.886 (10)O31xvii—O41—H31112.1 (9)
O3v—Na2—Na2xi135.114 (10)O31vi—O41—H3193.4 (9)
O12v—Na2—Na2xi114.30 (2)O41xvii—O41—H3196.7 (8)
O12ix—Na2—Na2xi65.70 (2)Na1—O41—H31109.2 (9)
O11x—Na2—Na2xi65.55 (2)Na1xvi—O41—H31140.3 (9)
O11iii—Na2—Na2xi114.45 (2)
O3—C1—O1—Na2xi126.38 (3)O12v—Na1—O31—O41xvii149.87 (18)
O2—C1—O1—Na2xi53.62 (3)O41v—Na1—O31—O41xvii144.56 (13)
O3—C1—O1—Na2126.38 (3)O41—Na1—O31—O41xvii86.4 (3)
O2—C1—O1—Na253.62 (3)O31vi—Na1—O31—O41xvii24.45 (16)
O1viii—Na2—O1—C110E1 (10)O31vii—Na1—O31—O41xvii5.1 (4)
O3ix—Na2—O1—C1151.38 (5)O2i—Na1—O31—O31xvii1.80 (18)
O3v—Na2—O1—C128.62 (5)O2ii—Na1—O31—O31xvii98.13 (18)
O12v—Na2—O1—C1122.97 (5)O11iii—Na1—O31—O31xvii163.65 (19)
O12ix—Na2—O1—C157.03 (5)O11—Na1—O31—O31xvii97.67 (18)
O11x—Na2—O1—C170.29 (5)O31iii—Na1—O31—O31xvii130.34 (19)
O11iii—Na2—O1—C1109.71 (5)O12iv—Na1—O31—O31xvii87.25 (18)
Na2xi—Na2—O1—C1122.24 (6)O12v—Na1—O31—O31xvii176.2 (2)
Na2xii—Na2—O1—C157.76 (6)O41v—Na1—O31—O31xvii178.50 (13)
O1viii—Na2—O1—Na2xi3E1 (10)O41—Na1—O31—O31xvii52.5 (2)
O3ix—Na2—O1—Na2xi29.147 (19)O31vi—Na1—O31—O31xvii58.4 (2)
O3v—Na2—O1—Na2xi150.853 (19)O31vii—Na1—O31—O31xvii28.9 (5)
O12v—Na2—O1—Na2xi114.79 (3)O2i—Na1—O31—Na1xviii118.43 (8)
O12ix—Na2—O1—Na2xi65.21 (3)O2ii—Na1—O31—Na1xviii22.10 (8)
O11x—Na2—O1—Na2xi51.95 (3)O11iii—Na1—O31—Na1xviii76.12 (8)
O11iii—Na2—O1—Na2xi128.05 (3)O11—Na1—O31—Na1xviii142.10 (8)
Na2xii—Na2—O1—Na2xi180O31iii—Na1—O31—Na1xviii109.43 (8)
O3—C1—O2—Na1xiii52.18 (3)O12iv—Na1—O31—Na1xviii152.53 (7)
O1—C1—O2—Na1xiii127.82 (3)O12v—Na1—O31—Na1xviii63.59 (8)
O3—C1—O2—Na1xiv52.18 (3)O41v—Na1—O31—Na1xviii58.27 (17)
O1—C1—O2—Na1xiv127.82 (3)O41—Na1—O31—Na1xviii172.7 (3)
O1—C1—O3—Na2xv52.34 (3)O31vi—Na1—O31—Na1xviii61.83 (13)
O2—C1—O3—Na2xv127.66 (3)O31vii—Na1—O31—Na1xviii91.4 (3)
O1—C1—O3—Na2iii52.34 (3)O31vi—O31—O41—O31iv51.8 (6)
O2—C1—O3—Na2iii127.66 (3)O41xvii—O31—O41—O31iv28.2 (4)
O2i—Na1—O11—O12iv57.07 (11)O31xvii—O31—O41—O31iv28.2 (4)
O2ii—Na1—O11—O12iv90.69 (14)Na1—O31—O41—O31iv154.4 (3)
O11iii—Na1—O11—O12iv136.41 (13)Na1xviii—O31—O41—O31iv15.8 (7)
O31iii—Na1—O11—O12iv39.26 (11)O31vi—O31—O41—O31xvii23.6 (3)
O31—Na1—O11—O12iv146.35 (12)O31iv—O31—O41—O31xvii28.2 (4)
O12v—Na1—O11—O12iv149.00 (10)O41xvii—O31—O41—O31xvii0
O41v—Na1—O11—O12iv55.17 (11)Na1—O31—O41—O31xvii126.16 (12)
O41—Na1—O11—O12iv134.17 (11)Na1xviii—O31—O41—O31xvii44.0 (3)
O31vi—Na1—O11—O12iv139.08 (11)O31iv—O31—O41—O31vi51.8 (6)
O31vii—Na1—O11—O12iv27.79 (11)O41xvii—O31—O41—O31vi23.6 (3)
O2i—Na1—O11—O11iv29.65 (2)O31xvii—O31—O41—O31vi23.6 (3)
O2ii—Na1—O11—O11iv177.41 (8)Na1—O31—O41—O31vi102.5 (4)
O11iii—Na1—O11—O11iv136.87 (5)Na1xviii—O31—O41—O31vi67.6 (4)
O31iii—Na1—O11—O11iv125.98 (5)O31vi—O31—O41—O41xvii23.6 (3)
O31—Na1—O11—O11iv59.63 (5)O31iv—O31—O41—O41xvii28.2 (4)
O12iv—Na1—O11—O11iv86.72 (11)O31xvii—O31—O41—O41xvii0
O12v—Na1—O11—O11iv124.28 (3)Na1—O31—O41—O41xvii126.16 (12)
O41v—Na1—O11—O11iv141.89 (4)Na1xviii—O31—O41—O41xvii44.0 (3)
O41—Na1—O11—O11iv47.45 (3)O31vi—O31—O41—Na1102.5 (4)
O31vi—Na1—O11—O11iv52.36 (5)O31iv—O31—O41—Na1154.4 (3)
O31vii—Na1—O11—O11iv114.51 (4)O41xvii—O31—O41—Na1126.16 (12)
O2i—Na1—O11—O122.61 (7)O31xvii—O31—O41—Na1126.16 (12)
O2ii—Na1—O11—O12145.16 (8)Na1xviii—O31—O41—Na1170.2 (3)
O11iii—Na1—O11—O12169.13 (9)O31vi—O31—O41—Na1xvi59.7 (7)
O31iii—Na1—O11—O1293.73 (8)O31iv—O31—O41—Na1xvi111.5 (7)
O31—Na1—O11—O1291.89 (8)O41xvii—O31—O41—Na1xvi83.3 (5)
O12iv—Na1—O11—O1254.46 (11)O31xvii—O31—O41—Na1xvi83.3 (5)
O12v—Na1—O11—O12156.53 (7)Na1—O31—O41—Na1xvi42.9 (5)
O41v—Na1—O11—O12109.63 (7)Na1xviii—O31—O41—Na1xvi127.3 (4)
O41—Na1—O11—O1279.71 (7)O2i—Na1—O41—O31iv3.5 (5)
O31vi—Na1—O11—O1284.62 (7)O2ii—Na1—O41—O31iv88.9 (5)
O31vii—Na1—O11—O1282.25 (7)O11iii—Na1—O41—O31iv172.6 (5)
O2i—Na1—O11—Na2iii129.88 (5)O11—Na1—O41—O31iv105.3 (5)
O2ii—Na1—O11—Na2iii17.88 (13)O31iii—Na1—O41—O31iv87.5 (5)
O11iii—Na1—O11—Na2iii63.60 (4)O31—Na1—O41—O31iv120.7 (7)
O31iii—Na1—O11—Na2iii33.55 (7)O12iv—Na1—O41—O31iv92.3 (5)
O31—Na1—O11—Na2iii140.84 (6)O12v—Na1—O41—O31iv172.1 (5)
O12iv—Na1—O11—Na2iii72.81 (11)O41v—Na1—O41—O31iv139.2 (5)
O12v—Na1—O11—Na2iii76.19 (5)O31vi—Na1—O41—O31iv84.7 (5)
O41v—Na1—O11—Na2iii17.64 (6)O31vii—Na1—O41—O31iv37.2 (6)
O41—Na1—O11—Na2iii153.02 (6)O2i—Na1—O41—O31124.3 (2)
O31vi—Na1—O11—Na2iii148.11 (6)O2ii—Na1—O41—O3131.8 (2)
O31vii—Na1—O11—Na2iii45.02 (6)O11iii—Na1—O41—O3166.7 (2)
O12iv—O11—O12—O11iv180O11—Na1—O41—O31134.0 (2)
Na1—O11—O12—O11iv110.74 (9)O31iii—Na1—O41—O31151.8 (2)
Na2iii—O11—O12—O11iv110.75 (9)O12iv—Na1—O41—O31146.9 (2)
O11iv—O11—O12—O12iv180O12v—Na1—O41—O3151.37 (19)
Na1—O11—O12—O12iv69.26 (9)O41v—Na1—O41—O31100.1 (2)
Na2iii—O11—O12—O12iv69.25 (9)O31vi—Na1—O41—O3136.1 (2)
O12iv—O11—O12—Na1xvi113.09 (9)O31vii—Na1—O41—O31157.90 (8)
O11iv—O11—O12—Na1xvi66.91 (9)O2i—Na1—O41—O31xvii42.99 (15)
Na1—O11—O12—Na1xvi43.83 (6)O2ii—Na1—O41—O31xvii49.47 (16)
Na2iii—O11—O12—Na1xvi177.66 (4)O11iii—Na1—O41—O31xvii147.96 (16)
O12iv—O11—O12—Na2xv110.90 (9)O11—Na1—O41—O31xvii144.74 (16)
O11iv—O11—O12—Na2xv69.10 (9)O31iii—Na1—O41—O31xvii127.0 (2)
Na1—O11—O12—Na2xv179.84 (4)O31—Na1—O41—O31xvii81.3 (3)
Na2iii—O11—O12—Na2xv41.65 (6)O12iv—Na1—O41—O31xvii131.80 (15)
O2i—Na1—O31—O4154.3 (2)O12v—Na1—O41—O31xvii132.64 (16)
O2ii—Na1—O31—O41150.6 (2)O41v—Na1—O41—O31xvii178.61 (16)
O11iii—Na1—O31—O41111.2 (2)O31vi—Na1—O41—O31xvii45.22 (18)
O11—Na1—O31—O4145.2 (2)O31vii—Na1—O41—O31xvii76.6 (3)
O31iii—Na1—O31—O4177.9 (2)O2i—Na1—O41—O31vi88.21 (9)
O12iv—Na1—O31—O4134.8 (2)O2ii—Na1—O41—O31vi4.25 (10)
O12v—Na1—O31—O41123.7 (2)O11iii—Na1—O41—O31vi102.75 (10)
O41v—Na1—O31—O41129.0 (3)O11—Na1—O41—O31vi170.04 (10)
O31vi—Na1—O31—O41110.9 (3)O31iii—Na1—O41—O31vi172.17 (10)
O31vii—Na1—O31—O4181.3 (4)O31—Na1—O41—O31vi36.1 (2)
O2i—Na1—O31—O31vi56.60 (14)O12iv—Na1—O41—O31vi177.01 (9)
O2ii—Na1—O31—O31vi39.73 (14)O12v—Na1—O41—O31vi87.42 (9)
O11iii—Na1—O31—O31vi137.95 (14)O41v—Na1—O41—O31vi136.17 (9)
O11—Na1—O31—O31vi156.07 (14)O31vii—Na1—O41—O31vi121.8 (2)
O31iii—Na1—O31—O31vi171.26 (14)O2i—Na1—O41—O41xvii74.18 (13)
O12iv—Na1—O31—O31vi145.64 (13)O2ii—Na1—O41—O41xvii18.28 (14)
O12v—Na1—O31—O31vi125.42 (15)O11iii—Na1—O41—O41xvii116.78 (13)
O41v—Na1—O31—O31vi120.10 (16)O11—Na1—O41—O41xvii175.93 (13)
O41—Na1—O31—O31vi110.9 (3)O31iii—Na1—O41—O41xvii158.15 (14)
O31vii—Na1—O31—O31vi29.5 (5)O31—Na1—O41—O41xvii50.08 (17)
O2i—Na1—O31—O31iv39.63 (2)O12iv—Na1—O41—O41xvii162.99 (12)
O2ii—Na1—O31—O31iv135.96 (2)O12v—Na1—O41—O41xvii101.45 (13)
O11iii—Na1—O31—O31iv125.82 (3)O41v—Na1—O41—O41xvii150.20 (13)
O11—Na1—O31—O31iv59.83 (3)O31vi—Na1—O41—O41xvii14.03 (12)
O31iii—Na1—O31—O31iv92.51 (2)O31vii—Na1—O41—O41xvii107.82 (17)
O12iv—Na1—O31—O31iv49.41 (4)O2i—Na1—O41—Na1xvi37.84 (4)
O12v—Na1—O31—O31iv138.35 (4)O2ii—Na1—O41—Na1xvi130.31 (3)
O41v—Na1—O31—O31iv143.67 (13)O11iii—Na1—O41—Na1xvi131.20 (5)
O41—Na1—O31—O31iv14.63 (19)O11—Na1—O41—Na1xvi63.91 (4)
O31vi—Na1—O31—O31iv96.23 (14)O31iii—Na1—O41—Na1xvi46.12 (16)
O31vii—Na1—O31—O31iv66.7 (3)O31—Na1—O41—Na1xvi162.1 (2)
O2i—Na1—O31—O41xvii32.15 (16)O12iv—Na1—O41—Na1xvi50.96 (5)
O2ii—Na1—O31—O41xvii64.18 (17)O12v—Na1—O41—Na1xvi146.52 (5)
O11iii—Na1—O31—O41xvii162.40 (17)O41v—Na1—O41—Na1xvi97.77 (4)
O11—Na1—O31—O41xvii131.61 (16)O31vi—Na1—O41—Na1xvi126.05 (11)
O31iii—Na1—O31—O41xvii164.28 (17)O31vii—Na1—O41—Na1xvi4.2 (2)
O12iv—Na1—O31—O41xvii121.19 (16)
Symmetry codes: (i) x, y1/2, z+1/2; (ii) x+1/2, y1/2, z; (iii) x+1/2, y, z+1/2; (iv) x, y, z; (v) x+1/2, y, z+1/2; (vi) x, y, z; (vii) x+1/2, y, z+1/2; (viii) x+1/2, y+1/2, z; (ix) x, y+1/2, z1/2; (x) x, y+1/2, z1/2; (xi) x1/2, y+1/2, z; (xii) x+1/2, y+1/2, z; (xiii) x, y+1/2, z+1/2; (xiv) x1/2, y+1/2, z; (xv) x, y+1/2, z+1/2; (xvi) x1/2, y, z+1/2; (xvii) x, y, z; (xviii) x+1/2, y, z1/2.
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.954 (17)1.658 (17)2.6013 (12)169.1 (17)
O12—H12···O2xix0.953 (14)1.663 (14)2.6081 (11)170.7 (14)
O31—H31···O3ix0.969 (16)1.625 (16)2.5690 (18)163.6 (14)
O41—H31···O3ix1.021 (16)1.625 (16)2.5503 (19)148.3 (15)
Symmetry codes: (ix) x, y+1/2, z1/2; (xix) x, y+1/2, z+1/2.
(m33) top
Crystal data top
CH3Na2O6F(000) = 632
Mr = 157.01Dx = 2.159 Mg m3
Orthorhombic, PbcaMo Kα radiation, λ = 0.71073 Å
Hall symbol: -P 2ac 2abCell parameters from 4111 reflections
a = 6.6971 (2) Åθ = 1.0–27.5°
b = 15.7410 (6) ŵ = 0.37 mm1
c = 9.1635 (3) ÅT = 240 K
V = 966.01 (6) Å3Needle, colourless
Z = 80.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
1099 independent reflections
Radiation source: Enraf Nonius FR590788 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.053
ϕ and ω scans with κ offsetsθmax = 27.5°, θmin = 3.4°
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
h = 88
Tmin = 0.987, Tmax = 1.013k = 2017
7832 measured reflectionsl = 1111
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.028H atoms treated by a mixture of independent and constrained refinement
wR(F2) = 0.074 w = 1/[σ2(Fo2) + (0.0352P)2 + 0.0715P]
where P = (Fo2 + 2Fc2)/3
S = 1.04(Δ/σ)max = 0.025
1099 reflectionsΔρmax = 0.26 e Å3
132 parametersΔρmin = 0.23 e Å3
5 restraintsExtinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4
Primary atom site location: structure-invariant direct methodsExtinction coefficient: 0.0228 (7)
Crystal data top
CH3Na2O6V = 966.01 (6) Å3
Mr = 157.01Z = 8
Orthorhombic, PbcaMo Kα radiation
a = 6.6971 (2) ŵ = 0.37 mm1
b = 15.7410 (6) ÅT = 240 K
c = 9.1635 (3) Å0.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
1099 independent reflections
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
788 reflections with I > 2σ(I)
Tmin = 0.987, Tmax = 1.013Rint = 0.053
7832 measured reflections
Refinement top
R[F2 > 2σ(F2)] = 0.0285 restraints
wR(F2) = 0.074H atoms treated by a mixture of independent and constrained refinement
S = 1.04Δρmax = 0.26 e Å3
1099 reflectionsΔρmin = 0.23 e Å3
132 parameters
Special details top

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.

Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
C10.00191 (4)0.33775 (2)0.25073 (3)0.01291 (8)
Na10.251032 (18)0.010903 (9)0.255277 (12)0.02266 (4)
Na20.246689 (17)0.249731 (7)0.000168 (11)0.01924 (4)
O10.00427 (3)0.268014 (14)0.17718 (3)0.01751 (6)
O20.00203 (3)0.409607 (15)0.18361 (2)0.01807 (6)
O30.00332 (3)0.334657 (15)0.39057 (2)0.01844 (6)
O110.09668 (5)0.13819 (2)0.33920 (3)0.02392 (9)0.7218 (3)
O120.09340 (5)0.11383 (2)0.41067 (3)0.02339 (9)0.7218 (3)
O210.09767 (13)0.11331 (5)0.40987 (8)0.02303 (18)*0.2782 (3)
O220.09188 (13)0.13833 (5)0.34031 (9)0.02359 (19)*0.2782 (3)
O310.09053 (9)0.02499 (4)0.01668 (6)0.02403 (17)0.3907 (5)
O410.01256 (9)0.03468 (4)0.05378 (6)0.03253 (19)0.4451 (6)
O510.09358 (19)0.02373 (9)0.01410 (15)0.0408 (5)0.1802 (6)
H110.0590 (8)0.1808 (3)0.2749 (5)0.0407 (15)*0.7218 (3)
H120.0511 (7)0.0985 (3)0.5101 (6)0.0447 (16)*0.7218 (3)
H210.0590 (8)0.0985 (3)0.5101 (6)0.0447 (16)*0.2782 (3)
H220.0511 (7)0.1808 (3)0.2749 (5)0.0407 (15)*0.2782 (3)
H310.0492 (8)0.0785 (4)0.0120 (6)0.0287 (16)*0.640 (5)
H510.0536 (16)0.0842 (8)0.0218 (12)0.042 (3)*0.360 (5)
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C10.01087 (15)0.01466 (16)0.01321 (14)0.00004 (13)0.00034 (12)0.00025 (12)
Na10.01997 (8)0.01843 (7)0.02958 (8)0.00011 (5)0.00334 (5)0.00036 (5)
Na20.01685 (8)0.02271 (7)0.01815 (7)0.00024 (5)0.00068 (5)0.00279 (5)
O10.02247 (12)0.01583 (11)0.01424 (11)0.00050 (10)0.00023 (9)0.00201 (9)
O20.02360 (12)0.01423 (11)0.01637 (10)0.00049 (10)0.00043 (9)0.00128 (9)
O30.02493 (12)0.01775 (11)0.01265 (11)0.00039 (10)0.00021 (9)0.00040 (9)
O110.02568 (17)0.02262 (17)0.02346 (15)0.00448 (16)0.00779 (15)0.00454 (13)
O120.02462 (17)0.02659 (16)0.01895 (14)0.00779 (16)0.00004 (14)0.00145 (14)
O310.0261 (3)0.0165 (3)0.0295 (3)0.0016 (3)0.0102 (3)0.0024 (3)
O410.0628 (4)0.0156 (3)0.0192 (3)0.0014 (3)0.0035 (3)0.0027 (2)
O510.0376 (9)0.0450 (9)0.0397 (8)0.0087 (8)0.0167 (7)0.0160 (7)
Geometric parameters (Å, º) top
C1—O31.2823 (4)O11—H221.333 (5)
C1—O21.2878 (4)O12—O220.7514 (9)
C1—O11.2882 (4)O12—O211.2796 (9)
Na1—O51i2.3642 (13)O12—Na2xi2.5168 (3)
Na1—O2ii2.3893 (3)O12—H120.985 (5)
Na1—O2iii2.3934 (3)O12—H211.389 (5)
Na1—O222.4014 (9)O21—O221.4741 (12)
Na1—O122.4015 (3)O21—Na1xii2.4321 (8)
Na1—O11i2.4091 (4)O21—Na2xii2.5264 (8)
Na1—O21i2.4321 (8)O21—H121.375 (5)
Na1—O312.4464 (6)O21—H210.983 (5)
Na1—O412.4698 (6)O22—Na2xi2.5133 (8)
Na1—O41i2.5038 (6)O22—H111.352 (5)
Na1—O31iv2.6800 (6)O22—H220.939 (5)
Na1—O51v2.7391 (14)O31—O410.6415 (8)
Na2—O1vi2.3433 (2)O31—O51v0.8174 (15)
Na2—O12.3556 (2)O31—O511.2334 (14)
Na2—O3vii2.3602 (2)O31—O41v1.3326 (8)
Na2—O3i2.3662 (2)O31—O31v1.4775 (12)
Na2—O22vii2.5133 (8)O31—Na1xiii2.6800 (6)
Na2—O12vii2.5168 (3)O31—H310.925 (6)
Na2—O11i2.5217 (3)O31—H511.387 (12)
Na2—O21i2.5264 (8)O41—O510.8168 (14)
Na2—Na2viii3.3486O41—O51v1.2356 (15)
Na2—Na2vi3.3486O41—O31v1.3326 (8)
O1—Na2viii2.3433 (2)O41—O41v1.4805 (11)
O2—Na1ix2.3893 (3)O41—Na1xii2.5038 (6)
O2—Na1x2.3934 (3)O41—H310.949 (6)
O3—Na2xi2.3602 (2)O41—H511.133 (12)
O3—Na2xii2.3662 (2)O51—O31v0.8174 (15)
O11—O210.7568 (8)O51—O41v1.2356 (15)
O11—O221.2628 (9)O51—O51v1.482 (3)
O11—O121.4820 (5)O51—Na1xii2.3642 (13)
O11—Na1xii2.4091 (4)O51—Na1v2.7391 (14)
O11—Na2xii2.5217 (3)O51—H311.310 (6)
O11—H110.928 (5)O51—H511.042 (12)
O3—C1—O2120.71 (3)Na2xi—O12—H1291.5 (3)
O3—C1—O1119.37 (3)O22—O12—H21130.0 (2)
O2—C1—O1119.92 (3)O21—O12—H2143.0 (2)
O51i—Na1—O2ii89.89 (3)O11—O12—H2172.8 (2)
O51i—Na1—O2iii99.17 (3)Na1—O12—H21126.5 (2)
O2ii—Na1—O2iii96.306 (10)Na2xi—O12—H21103.6 (2)
O51i—Na1—O2280.44 (4)H12—O12—H2130.5 (3)
O2ii—Na1—O22162.52 (2)O11—O21—O1289.59 (8)
O2iii—Na1—O2299.57 (2)O11—O21—O2258.95 (7)
O51i—Na1—O1266.79 (3)O12—O21—O2230.64 (4)
O2ii—Na1—O12156.563 (11)O11—O21—Na1xii79.29 (7)
O2iii—Na1—O1289.967 (10)O12—O21—Na1xii115.11 (5)
O22—Na1—O1218.00 (2)O22—O21—Na1xii105.47 (5)
O51i—Na1—O11i93.66 (4)O11—O21—Na2xii81.03 (7)
O2ii—Na1—O11i99.393 (11)O12—O21—Na2xii113.91 (5)
O2iii—Na1—O11i159.704 (11)O22—O21—Na2xii105.65 (5)
O22—Na1—O11i67.04 (2)Na1xii—O21—Na2xii126.53 (3)
O12—Na1—O11i80.684 (12)O11—O21—H12130.8 (2)
O51i—Na1—O21i108.43 (4)O12—O21—H1243.4 (2)
O2ii—Na1—O21i89.02 (2)O22—O21—H1273.2 (2)
O2iii—Na1—O21i151.90 (2)Na1xii—O21—H12127.2 (2)
O22—Na1—O21i80.40 (3)Na2xii—O21—H12103.0 (2)
O12—Na1—O21i96.02 (2)O11—O21—H21157.0 (3)
O11i—Na1—O21i17.98 (2)O12—O21—H2174.5 (3)
O51i—Na1—O31169.90 (4)O22—O21—H21103.9 (3)
O2ii—Na1—O3196.831 (16)Na1xii—O21—H21122.3 (3)
O2iii—Na1—O3187.615 (16)Na2xii—O21—H2190.3 (3)
O22—Na1—O3191.10 (2)H12—O21—H2131.1 (4)
O12—Na1—O31106.000 (17)O12—O22—O1191.11 (8)
O11i—Na1—O3177.846 (16)O12—O22—O2160.22 (7)
O21i—Na1—O3164.33 (2)O11—O22—O2130.89 (4)
O51i—Na1—O41160.04 (4)O12—O22—Na181.01 (7)
O2ii—Na1—O41110.073 (15)O11—O22—Na1116.09 (5)
O2iii—Na1—O4179.513 (15)O21—O22—Na1107.42 (5)
O22—Na1—O4180.15 (2)O12—O22—Na2xi81.68 (7)
O12—Na1—O4193.255 (16)O11—O22—Na2xi114.74 (5)
O11i—Na1—O4183.055 (16)O21—O22—Na2xi106.92 (5)
O21i—Na1—O4172.77 (2)Na1—O22—Na2xi126.25 (4)
O31—Na1—O4114.99 (2)O12—O22—H11130.1 (2)
O51i—Na1—O41i19.04 (3)O11—O22—H1141.4 (2)
O2ii—Na1—O41i78.910 (15)O21—O22—H1171.4 (2)
O2iii—Na1—O41i115.558 (15)Na1—O22—H11126.9 (2)
O22—Na1—O41i87.64 (2)Na2xi—O22—H11102.7 (2)
O12—Na1—O41i78.014 (16)O12—O22—H22156.6 (3)
O11i—Na1—O41i80.250 (16)O11—O22—H2272.9 (3)
O21i—Na1—O41i92.54 (2)O21—O22—H22102.5 (3)
O31—Na1—O41i156.68 (2)Na1—O22—H22121.1 (3)
O41—Na1—O41i162.20 (3)Na2xi—O22—H2289.5 (3)
O51i—Na1—O31iv17.23 (4)H11—O22—H2231.4 (3)
O2ii—Na1—O31iv80.267 (14)O41—O31—O51v115.23 (13)
O2iii—Na1—O31iv86.030 (15)O41—O31—O5136.89 (9)
O22—Na1—O31iv93.54 (2)O51v—O31—O5190.19 (12)
O12—Na1—O31iv77.662 (15)O41—O31—O41v90.15 (8)
O11i—Na1—O31iv109.202 (16)O51v—O31—O41v35.36 (10)
O21i—Na1—O31iv122.07 (2)O51—O31—O41v57.42 (8)
O31—Na1—O31iv172.673 (7)O41—O31—O31v64.42 (8)
O41—Na1—O31iv162.97 (2)O51v—O31—O31v56.60 (10)
O41i—Na1—O31iv29.542 (18)O51—O31—O31v33.59 (7)
O51i—Na1—O51v172.745 (9)O41v—O31—O31v25.74 (3)
O2ii—Na1—O51v83.45 (3)O41—O31—Na184.58 (7)
O2iii—Na1—O51v78.79 (3)O51v—O31—Na1102.26 (11)
O22—Na1—O51v106.73 (4)O51—O31—Na1117.05 (7)
O12—Na1—O51v119.96 (3)O41v—O31—Na1126.64 (4)
O11i—Na1—O51v90.27 (3)O31v—O31—Na1119.82 (5)
O21i—Na1—O51v74.43 (4)O41—O31—Na1xiii147.79 (8)
O31—Na1—O51v16.95 (3)O51v—O31—Na1xiii58.93 (10)
O41—Na1—O51v26.81 (3)O51—O31—Na1xiii112.04 (7)
O41i—Na1—O51v158.25 (3)O41v—O31—Na1xiii67.88 (3)
O31iv—Na1—O51v156.34 (3)O31v—O31—Na1xiii91.59 (5)
O1vi—Na2—O1179.762 (7)Na1—O31—Na1xiii127.28 (3)
O1vi—Na2—O3vii98.289 (9)O41—O31—H3172.0 (4)
O1—Na2—O3vii81.679 (8)O51v—O31—H31139.8 (4)
O1vi—Na2—O3i81.810 (8)O51—O31—H3173.2 (4)
O1—Na2—O3i98.221 (8)O41v—O31—H31110.5 (4)
O3vii—Na2—O3i179.837 (9)O31v—O31—H31100.4 (4)
O1vi—Na2—O22vii88.54 (2)Na1—O31—H31117.9 (4)
O1—Na2—O22vii91.22 (2)Na1xiii—O31—H3193.3 (4)
O3vii—Na2—O22vii81.67 (2)O41—O31—H5153.7 (5)
O3i—Na2—O22vii98.20 (2)O51v—O31—H51124.0 (5)
O1vi—Na2—O12vii99.633 (10)O51—O31—H5146.4 (5)
O1—Na2—O12vii80.135 (10)O41v—O31—H5189.4 (5)
O3vii—Na2—O12vii93.049 (10)O31v—O31—H5174.6 (5)
O3i—Na2—O12vii86.807 (10)Na1—O31—H51126.4 (5)
O22vii—Na2—O12vii17.18 (2)Na1xiii—O31—H51100.9 (5)
O1vi—Na2—O11i91.480 (10)H31—O31—H5126.9 (6)
O1—Na2—O11i88.758 (10)O31—O41—O51114.98 (13)
O3vii—Na2—O11i98.706 (10)O31—O41—O51v36.76 (9)
O3i—Na2—O11i81.418 (10)O51—O41—O51v90.06 (12)
O22vii—Na2—O11i179.61 (2)O31—O41—O31v89.85 (8)
O12vii—Na2—O11i162.507 (11)O51—O41—O31v35.39 (11)
O1vi—Na2—O21i80.314 (19)O51v—O41—O31v57.26 (7)
O1—Na2—O21i99.919 (19)O31—O41—O41v64.17 (7)
O3vii—Na2—O21i87.32 (2)O51—O41—O41v56.57 (11)
O3i—Na2—O21i92.82 (2)O51v—O41—O41v33.49 (7)
O22vii—Na2—O21i163.06 (3)O31v—O41—O41v25.68 (4)
O12vii—Na2—O21i179.63 (2)O31—O41—Na180.44 (7)
O11i—Na2—O21i17.243 (19)O51—O41—Na1149.72 (11)
O1vi—Na2—Na2viii135.455 (8)O51v—O41—Na188.83 (7)
O1—Na2—Na2viii44.402 (6)O31v—O41—Na1126.19 (4)
O3vii—Na2—Na2viii44.961 (6)O41v—O41—Na1117.35 (5)
O3i—Na2—Na2viii134.890 (8)O31—O41—Na1xii154.72 (8)
O22vii—Na2—Na2viii65.56 (2)O51—O41—Na1xii70.78 (10)
O12vii—Na2—Na2viii65.810 (8)O51v—O41—Na1xii123.21 (7)
O11i—Na2—Na2viii114.659 (9)O31v—O41—Na1xii82.58 (4)
O21i—Na2—Na2viii114.48 (2)O41v—O41—Na1xii105.99 (5)
O1vi—Na2—Na2vi44.698 (6)Na1—O41—Na1xii84.679 (18)
O1—Na2—Na2vi135.444 (8)O31—O41—H3168.0 (4)
O3vii—Na2—Na2vi135.334 (8)O51—O41—H3195.5 (4)
O3i—Na2—Na2vi44.815 (6)O51v—O41—H3196.2 (4)
O22vii—Na2—Na2vi114.28 (2)O31v—O41—H31109.8 (4)
O12vii—Na2—Na2vi113.957 (9)O41v—O41—H3198.2 (4)
O11i—Na2—Na2vi65.496 (8)Na1—O41—H31114.7 (3)
O21i—Na2—Na2vi65.75 (2)Na1xii—O41—H31137.2 (4)
Na2viii—Na2—Na2vi179.691 (8)O31—O41—H5199.1 (6)
C1—O1—Na2viii118.197 (18)O51—O41—H5162.1 (6)
C1—O1—Na2117.148 (18)O51v—O41—H51112.1 (6)
Na2viii—O1—Na290.899 (8)O31v—O41—H5189.2 (6)
C1—O2—Na1ix117.974 (18)O41v—O41—H5193.2 (6)
C1—O2—Na1x117.315 (18)Na1—O41—H51144.5 (6)
Na1ix—O2—Na1x88.923 (9)Na1xii—O41—H51104.9 (6)
C1—O3—Na2xi116.106 (19)H31—O41—H5138.0 (7)
C1—O3—Na2xii116.794 (19)O41—O51—O31v109.26 (16)
Na2xi—O3—Na2xii90.224 (8)O41—O51—O3128.13 (7)
O21—O11—O2290.16 (8)O31v—O51—O3189.81 (12)
O21—O11—O1259.70 (7)O41—O51—O41v89.94 (12)
O22—O11—O1230.46 (4)O31v—O51—O41v28.01 (7)
O21—O11—Na1xii82.73 (7)O31—O51—O41v65.33 (8)
O22—O11—Na1xii115.32 (4)O41—O51—O51v56.49 (10)
O12—O11—Na1xii107.90 (2)O31v—O51—O51v56.34 (11)
O21—O11—Na2xii81.73 (7)O31—O51—O51v33.48 (7)
O22—O11—Na2xii114.21 (4)O41v—O51—O51v33.45 (7)
O12—O11—Na2xii106.20 (2)O41—O51—Na1xii90.18 (11)
Na1xii—O11—Na2xii127.818 (15)O31v—O51—Na1xii103.85 (12)
O21—O11—H11156.9 (3)O31—O51—Na1xii115.11 (9)
O22—O11—H1174.4 (3)O41v—O51—Na1xii125.43 (9)
O12—O11—H11103.5 (3)O51v—O51—Na1xii119.02 (13)
Na1xii—O11—H11119.2 (3)O41—O51—Na1v141.09 (12)
Na2xii—O11—H1188.9 (3)O31v—O51—Na1v60.78 (10)
O21—O11—H22130.2 (2)O31—O51—Na1v113.91 (8)
O22—O11—H2242.3 (2)O41v—O51—Na1v64.36 (6)
O12—O11—H2271.8 (2)O51v—O51—Na1v93.90 (11)
Na1xii—O11—H22125.0 (2)Na1xii—O51—Na1v128.25 (5)
Na2xii—O11—H22102.5 (2)O41—O51—H3146.1 (3)
H11—O11—H2232.1 (4)O31v—O51—H31122.5 (3)
O22—O12—O2189.13 (8)O31—O51—H3142.5 (3)
O22—O12—O1158.43 (7)O41v—O51—H3194.5 (3)
O21—O12—O1130.71 (4)O51v—O51—H3171.5 (3)
O22—O12—Na180.99 (7)Na1xii—O51—H31122.7 (3)
O21—O12—Na1115.59 (4)Na1v—O51—H31104.3 (3)
O11—O12—Na1106.86 (2)O41—O51—H5174.0 (6)
O22—O12—Na2xi81.14 (7)O31v—O51—H51137.9 (7)
O21—O12—Na2xi114.53 (4)O31—O51—H5174.6 (6)
O11—O12—Na2xi105.85 (2)O41v—O51—H51114.1 (6)
Na1—O12—Na2xi126.078 (14)O51v—O51—H51100.8 (6)
O22—O12—H12156.4 (3)Na1xii—O51—H51118.3 (6)
O21—O12—H1273.5 (3)Na1v—O51—H5189.8 (6)
O11—O12—H12103.0 (3)H31—O51—H5132.1 (7)
Na1—O12—H12120.7 (3)
O3—C1—O1—Na2viii125.89 (2)O12—Na1—O31—O51v147.25 (10)
O2—C1—O1—Na2viii54.18 (3)O11i—Na1—O31—O51v136.28 (11)
O3—C1—O1—Na2126.96 (2)O21i—Na1—O31—O51v123.70 (11)
O2—C1—O1—Na252.97 (3)O41—Na1—O31—O51v114.68 (14)
O1vi—Na2—O1—C169 (2)O41i—Na1—O31—O51v115.89 (11)
O3vii—Na2—O1—C1151.85 (2)O31iv—Na1—O31—O51v28.11 (16)
O3i—Na2—O1—C128.02 (2)O51i—Na1—O31—O5193.9 (2)
O22vii—Na2—O1—C170.45 (3)O2ii—Na1—O31—O51134.69 (9)
O12vii—Na2—O1—C157.26 (2)O2iii—Na1—O31—O5138.62 (9)
O11i—Na2—O1—C1109.17 (2)O22—Na1—O31—O5160.91 (9)
O21i—Na2—O1—C1122.37 (3)O12—Na1—O31—O5150.66 (9)
Na2viii—Na2—O1—C1122.62 (2)O11i—Na1—O31—O51127.13 (9)
Na2vi—Na2—O1—C156.99 (2)O21i—Na1—O31—O51139.71 (9)
O1vi—Na2—O1—Na2viii53 (2)O41—Na1—O31—O5118.09 (9)
O3vii—Na2—O1—Na2viii29.225 (7)O41i—Na1—O31—O51147.52 (9)
O3i—Na2—O1—Na2viii150.645 (9)O31iv—Na1—O31—O5168.48 (13)
O22vii—Na2—O1—Na2viii52.18 (2)O51v—Na1—O31—O5196.59 (13)
O12vii—Na2—O1—Na2viii65.363 (9)O51i—Na1—O31—O41v161.97 (19)
O11i—Na2—O1—Na2viii128.211 (11)O2ii—Na1—O31—O41v66.64 (6)
O21i—Na2—O1—Na2viii115.01 (2)O2iii—Na1—O31—O41v29.43 (6)
Na2vi—Na2—O1—Na2viii179.618 (11)O22—Na1—O31—O41v128.97 (6)
O3—C1—O2—Na1ix50.42 (3)O12—Na1—O31—O41v118.71 (5)
O1—C1—O2—Na1ix129.51 (2)O11i—Na1—O31—O41v164.82 (6)
O3—C1—O2—Na1x54.08 (3)O21i—Na1—O31—O41v152.24 (6)
O1—C1—O2—Na1x125.99 (2)O41—Na1—O31—O41v86.14 (9)
O2—C1—O3—Na2xi126.36 (2)O41i—Na1—O31—O41v144.43 (4)
O1—C1—O3—Na2xi53.57 (3)O31iv—Na1—O31—O41v0.43 (13)
O2—C1—O3—Na2xii129.03 (2)O51v—Na1—O31—O41v28.54 (10)
O1—C1—O3—Na2xii51.04 (3)O51i—Na1—O31—O31v132.16 (19)
O21—O11—O12—O22179.69 (11)O2ii—Na1—O31—O31v96.45 (6)
Na1xii—O11—O12—O22109.73 (8)O2iii—Na1—O31—O31v0.38 (6)
Na2xii—O11—O12—O22110.38 (8)O22—Na1—O31—O31v99.16 (6)
O22—O11—O12—O21179.69 (11)O12—Na1—O31—O31v88.90 (6)
Na1xii—O11—O12—O2169.96 (7)O11i—Na1—O31—O31v165.37 (7)
Na2xii—O11—O12—O2169.92 (7)O21i—Na1—O31—O31v177.95 (7)
O21—O11—O12—Na1111.92 (8)O41—Na1—O31—O31v56.33 (8)
O22—O11—O12—Na167.77 (8)O41i—Na1—O31—O31v174.24 (5)
Na1xii—O11—O12—Na141.96 (2)O31iv—Na1—O31—O31v30.24 (13)
Na2xii—O11—O12—Na1178.152 (12)O51v—Na1—O31—O31v58.35 (11)
O21—O11—O12—Na2xi111.55 (8)O51i—Na1—O31—Na1xiii109.4 (2)
O22—O11—O12—Na2xi68.76 (8)O2ii—Na1—O31—Na1xiii22.01 (3)
Na1xii—O11—O12—Na2xi178.489 (11)O2iii—Na1—O31—Na1xiii118.08 (3)
Na2xii—O11—O12—Na2xi41.63 (2)O22—Na1—O31—Na1xiii142.38 (3)
O51i—Na1—O12—O22137.33 (8)O12—Na1—O31—Na1xiii152.64 (2)
O2ii—Na1—O12—O22131.38 (7)O11i—Na1—O31—Na1xiii76.17 (3)
O2iii—Na1—O12—O22122.67 (7)O21i—Na1—O31—Na1xiii63.59 (3)
O11i—Na1—O12—O2239.24 (7)O41—Na1—O31—Na1xiii174.79 (9)
O21i—Na1—O12—O2229.83 (7)O41i—Na1—O31—Na1xiii55.78 (6)
O31—Na1—O12—O2235.16 (7)O31iv—Na1—O31—Na1xiii88.22 (10)
O41—Na1—O12—O2243.17 (7)O51v—Na1—O31—Na1xiii60.11 (10)
O41i—Na1—O12—O22121.15 (7)O51v—O31—O41—O5151.6 (2)
O31iv—Na1—O12—O22151.39 (7)O41v—O31—O41—O5125.76 (13)
O51v—Na1—O12—O2245.65 (8)O31v—O31—O41—O5125.76 (13)
O51i—Na1—O12—O21138.00 (6)Na1—O31—O41—O51152.57 (13)
O2ii—Na1—O12—O21143.95 (5)Na1xiii—O31—O41—O5119.6 (2)
O2iii—Na1—O12—O2138.00 (4)O51—O31—O41—O51v51.6 (2)
O22—Na1—O12—O2184.67 (8)O41v—O31—O41—O51v25.80 (13)
O11i—Na1—O12—O21123.90 (4)O31v—O31—O41—O51v25.80 (13)
O21i—Na1—O12—O21114.50 (4)Na1—O31—O41—O51v101.02 (13)
O31—Na1—O12—O2149.51 (5)Na1xiii—O31—O41—O51v71.20 (17)
O41—Na1—O12—O2141.49 (5)O51v—O31—O41—O31v25.80 (13)
O41i—Na1—O12—O21154.18 (5)O51—O31—O41—O31v25.76 (13)
O31iv—Na1—O12—O21123.94 (5)O41v—O31—O41—O31v0
O51v—Na1—O12—O2139.02 (6)Na1—O31—O41—O31v126.81 (4)
O51i—Na1—O12—O11169.69 (4)Na1xiii—O31—O41—O31v45.40 (14)
O2ii—Na1—O12—O11175.63 (2)O51v—O31—O41—O41v25.80 (13)
O2iii—Na1—O12—O1169.68 (2)O51—O31—O41—O41v25.76 (13)
O22—Na1—O12—O1152.99 (7)O31v—O31—O41—O41v0
O11i—Na1—O12—O1192.223 (19)Na1—O31—O41—O41v126.81 (4)
O21i—Na1—O12—O1182.81 (3)Na1xiii—O31—O41—O41v45.40 (14)
O31—Na1—O12—O1117.83 (3)O51v—O31—O41—Na1101.02 (13)
O41—Na1—O12—O119.81 (2)O51—O31—O41—Na1152.57 (13)
O41i—Na1—O12—O11174.14 (3)O41v—O31—O41—Na1126.81 (4)
O31iv—Na1—O12—O11155.63 (3)O31v—O31—O41—Na1126.81 (4)
O51v—Na1—O12—O117.34 (4)Na1xiii—O31—O41—Na1172.21 (14)
O51i—Na1—O12—Na2xi65.29 (4)O51v—O31—O41—Na1xii46.3 (3)
O2ii—Na1—O12—Na2xi59.34 (3)O51—O31—O41—Na1xii97.8 (2)
O2iii—Na1—O12—Na2xi165.295 (15)O41v—O31—O41—Na1xii72.05 (18)
O22—Na1—O12—Na2xi72.04 (7)O31v—O31—O41—Na1xii72.05 (18)
O11i—Na1—O12—Na2xi32.800 (16)Na1—O31—O41—Na1xii54.76 (18)
O21i—Na1—O12—Na2xi42.21 (2)Na1xiii—O31—O41—Na1xii117.45 (17)
O31—Na1—O12—Na2xi107.20 (2)O51i—Na1—O41—O31150.13 (12)
O41—Na1—O12—Na2xi115.21 (2)O2ii—Na1—O41—O3128.92 (8)
O41i—Na1—O12—Na2xi49.117 (19)O2iii—Na1—O41—O31121.86 (7)
O31iv—Na1—O12—Na2xi79.35 (2)O22—Na1—O41—O31136.39 (8)
O51v—Na1—O12—Na2xi117.69 (4)O12—Na1—O41—O31148.78 (7)
O22—O11—O21—O120.16 (6)O11i—Na1—O41—O3168.58 (7)
Na1xii—O11—O21—O12115.68 (4)O21i—Na1—O41—O3153.48 (7)
Na2xii—O11—O21—O12114.30 (4)O41i—Na1—O41—O3188.99 (10)
O12—O11—O21—O220.16 (6)O31iv—Na1—O41—O31154.24 (4)
Na1xii—O11—O21—O22115.52 (4)O51v—Na1—O41—O3135.98 (9)
Na2xii—O11—O21—O22114.45 (4)O51i—Na1—O41—O5185.8 (2)
O22—O11—O21—Na1xii115.52 (4)O2ii—Na1—O41—O5195.2 (2)
O12—O11—O21—Na1xii115.68 (4)O2iii—Na1—O41—O512.2 (2)
Na2xii—O11—O21—Na1xii130.028 (18)O22—Na1—O41—O5199.5 (2)
O22—O11—O21—Na2xii114.45 (4)O12—Na1—O41—O5187.1 (2)
O12—O11—O21—Na2xii114.30 (4)O11i—Na1—O41—O51167.3 (2)
Na1xii—O11—O21—Na2xii130.028 (18)O21i—Na1—O41—O51177.6 (2)
O22—O12—O21—O110.26 (9)O31—Na1—O41—O51124.1 (2)
Na1—O12—O21—O1179.84 (7)O41i—Na1—O41—O51146.9 (2)
Na2xi—O12—O21—O1179.59 (7)O31iv—Na1—O41—O5130.1 (2)
O11—O12—O21—O220.26 (9)O51v—Na1—O41—O5188.1 (2)
Na1—O12—O21—O2279.58 (7)O51i—Na1—O41—O51v173.89 (7)
Na2xi—O12—O21—O2279.85 (7)O2ii—Na1—O41—O51v7.06 (7)
O22—O12—O21—Na1xii77.70 (8)O2iii—Na1—O41—O51v85.88 (7)
O11—O12—O21—Na1xii77.96 (7)O22—Na1—O41—O51v172.37 (7)
Na1—O12—O21—Na1xii1.88 (6)O12—Na1—O41—O51v175.24 (7)
Na2xi—O12—O21—Na1xii157.55 (3)O11i—Na1—O41—O51v104.56 (7)
O22—O12—O21—Na2xii80.26 (8)O21i—Na1—O41—O51v89.46 (7)
O11—O12—O21—Na2xii80.00 (7)O31—Na1—O41—O51v35.98 (9)
Na1—O12—O21—Na2xii159.84 (2)O41i—Na1—O41—O51v124.97 (9)
Na2xi—O12—O21—Na2xii0.41 (5)O31iv—Na1—O41—O51v118.26 (9)
O21—O12—O22—O110.16 (6)O51i—Na1—O41—O31v127.14 (11)
Na1—O12—O22—O11116.24 (5)O2ii—Na1—O41—O31v53.81 (6)
Na2xi—O12—O22—O11114.84 (5)O2iii—Na1—O41—O31v39.13 (5)
O11—O12—O22—O210.16 (6)O22—Na1—O41—O31v140.88 (6)
Na1—O12—O22—O21116.09 (4)O12—Na1—O41—O31v128.49 (5)
Na2xi—O12—O22—O21115.00 (4)O11i—Na1—O41—O31v151.31 (6)
O21—O12—O22—Na1116.09 (4)O21i—Na1—O41—O31v136.21 (6)
O11—O12—O22—Na1116.24 (5)O31—Na1—O41—O31v82.73 (9)
Na2xi—O12—O22—Na1128.91 (2)O41i—Na1—O41—O31v171.72 (6)
O21—O12—O22—Na2xi115.00 (4)O31iv—Na1—O41—O31v71.51 (9)
O11—O12—O22—Na2xi114.84 (5)O51v—Na1—O41—O31v46.75 (8)
Na1—O12—O22—Na2xi128.91 (2)O51i—Na1—O41—O41v155.64 (11)
O21—O11—O22—O120.26 (10)O2ii—Na1—O41—O41v25.31 (6)
Na1xii—O11—O22—O1282.30 (7)O2iii—Na1—O41—O41v67.63 (6)
Na2xii—O11—O22—O1280.73 (8)O22—Na1—O41—O41v169.39 (6)
O12—O11—O22—O210.26 (10)O12—Na1—O41—O41v157.00 (6)
Na1xii—O11—O22—O2182.03 (7)O11i—Na1—O41—O41v122.81 (6)
Na2xii—O11—O22—O2181.00 (7)O21i—Na1—O41—O41v107.70 (6)
O21—O11—O22—Na180.26 (8)O31—Na1—O41—O41v54.23 (7)
O12—O11—O22—Na180.53 (8)O41i—Na1—O41—O41v143.22 (6)
Na1xii—O11—O22—Na11.77 (6)O31iv—Na1—O41—O41v100.02 (8)
Na2xii—O11—O22—Na1161.26 (3)O51v—Na1—O41—O41v18.25 (7)
O21—O11—O22—Na2xi81.61 (8)O51i—Na1—O41—Na1xii50.37 (11)
O12—O11—O22—Na2xi81.34 (7)O2ii—Na1—O41—Na1xii130.577 (11)
Na1xii—O11—O22—Na2xi163.64 (2)O2iii—Na1—O41—Na1xii37.637 (12)
Na2xii—O11—O22—Na2xi0.61 (6)O22—Na1—O41—Na1xii64.12 (2)
O11—O21—O22—O12179.70 (11)O12—Na1—O41—Na1xii51.726 (16)
Na1xii—O21—O22—O12113.37 (7)O11i—Na1—O41—Na1xii131.923 (15)
Na2xii—O21—O22—O12110.66 (7)O21i—Na1—O41—Na1xii147.03 (3)
O12—O21—O22—O11179.70 (11)O31—Na1—O41—Na1xii159.49 (8)
Na1xii—O21—O22—O1166.94 (6)O41i—Na1—O41—Na1xii111.51 (7)
Na2xii—O21—O22—O1169.04 (6)O31iv—Na1—O41—Na1xii5.25 (7)
O11—O21—O22—Na1111.91 (7)O51v—Na1—O41—Na1xii123.51 (7)
O12—O21—O22—Na168.39 (6)O31—O41—O51—O31v48.6 (2)
Na1xii—O21—O22—Na144.98 (5)O51v—O41—O51—O31v20.68 (10)
Na2xii—O21—O22—Na1179.05 (3)O41v—O41—O51—O31v20.68 (10)
O11—O21—O22—Na2xi110.09 (7)Na1—O41—O51—O31v67.1 (3)
O12—O21—O22—Na2xi69.61 (6)Na1xii—O41—O51—O31v104.75 (16)
Na1xii—O21—O22—Na2xi177.02 (3)O51v—O41—O51—O3127.95 (13)
Na2xii—O21—O22—Na2xi41.05 (5)O31v—O41—O51—O3148.6 (2)
O51i—Na1—O22—O1239.18 (7)O41v—O41—O51—O3127.95 (13)
O2ii—Na1—O22—O1296.40 (9)Na1—O41—O51—O31115.7 (3)
O2iii—Na1—O22—O1258.62 (7)Na1xii—O41—O51—O31153.38 (10)
O11i—Na1—O22—O12137.32 (8)O31—O41—O51—O41v27.95 (13)
O21i—Na1—O22—O12149.89 (7)O51v—O41—O51—O41v0
O31—Na1—O22—O12146.38 (7)O31v—O41—O51—O41v20.68 (10)
O41—Na1—O22—O12136.11 (7)Na1—O41—O51—O41v87.8 (2)
O41i—Na1—O22—O1256.91 (7)Na1xii—O41—O51—O41v125.43 (9)
O31iv—Na1—O22—O1227.95 (7)O31—O41—O51—O51v27.95 (13)
O51v—Na1—O22—O12139.69 (7)O31v—O41—O51—O51v20.68 (10)
O51i—Na1—O22—O11125.99 (6)O41v—O41—O51—O51v0
O2ii—Na1—O22—O11176.78 (3)Na1—O41—O51—O51v87.8 (2)
O2iii—Na1—O22—O1128.20 (6)Na1xii—O41—O51—O51v125.43 (9)
O12—Na1—O22—O1186.81 (9)O31—O41—O51—Na1xii153.38 (10)
O11i—Na1—O22—O11135.87 (6)O51v—O41—O51—Na1xii125.43 (9)
O21i—Na1—O22—O11123.30 (6)O31v—O41—O51—Na1xii104.75 (16)
O31—Na1—O22—O1159.57 (5)O41v—O41—O51—Na1xii125.43 (9)
O41—Na1—O22—O1149.29 (5)Na1—O41—O51—Na1xii37.6 (2)
O41i—Na1—O22—O11143.72 (5)O31—O41—O51—Na1v18.4 (3)
O31iv—Na1—O22—O11114.76 (5)O51v—O41—O51—Na1v46.34 (15)
O51v—Na1—O22—O1152.88 (6)O31v—O41—O51—Na1v67.02 (18)
O51i—Na1—O22—O2193.96 (6)O41v—O41—O51—Na1v46.34 (15)
O2ii—Na1—O22—O21151.19 (5)Na1—O41—O51—Na1v134.13 (15)
O2iii—Na1—O22—O213.83 (5)Na1xii—O41—O51—Na1v171.8 (2)
O12—Na1—O22—O2154.79 (7)O51v—O31—O51—O41134.9 (2)
O11i—Na1—O22—O21167.89 (6)O41v—O31—O51—O41148.95 (15)
O21i—Na1—O22—O21155.32 (6)O31v—O31—O51—O41134.9 (2)
O31—Na1—O22—O2191.59 (5)Na1—O31—O51—O4130.99 (15)
O41—Na1—O22—O2181.32 (5)Na1xiii—O31—O51—O41168.86 (13)
O41i—Na1—O22—O21111.70 (5)O41—O31—O51—O31v134.9 (2)
O31iv—Na1—O22—O2182.74 (5)O51v—O31—O51—O31v0
O51v—Na1—O22—O2184.90 (6)O41v—O31—O51—O31v14.06 (7)
O51i—Na1—O22—Na2xi33.50 (5)Na1—O31—O51—O31v103.90 (11)
O2ii—Na1—O22—Na2xi23.73 (10)Na1xiii—O31—O51—O31v56.26 (12)
O2iii—Na1—O22—Na2xi131.29 (4)O41—O31—O51—O41v148.95 (15)
O12—Na1—O22—Na2xi72.67 (7)O51v—O31—O51—O41v14.06 (7)
O11i—Na1—O22—Na2xi64.64 (4)O31v—O31—O51—O41v14.06 (7)
O21i—Na1—O22—Na2xi77.21 (4)Na1—O31—O51—O41v117.96 (6)
O31—Na1—O22—Na2xi140.94 (4)Na1xiii—O31—O51—O41v42.19 (7)
O41—Na1—O22—Na2xi151.22 (4)O41—O31—O51—O51v134.9 (2)
O41i—Na1—O22—Na2xi15.76 (4)O41v—O31—O51—O51v14.06 (7)
O31iv—Na1—O22—Na2xi44.72 (4)O31v—O31—O51—O51v0
O51v—Na1—O22—Na2xi147.63 (4)Na1—O31—O51—O51v103.90 (11)
O51i—Na1—O31—O4175.8 (2)Na1xiii—O31—O51—O51v56.26 (12)
O2ii—Na1—O31—O41152.78 (7)O41—O31—O51—Na1xii29.66 (11)
O2iii—Na1—O31—O4156.71 (7)O51v—O31—O51—Na1xii105.23 (14)
O22—Na1—O31—O4142.82 (8)O41v—O31—O51—Na1xii119.30 (10)
O12—Na1—O31—O4132.57 (8)O31v—O31—O51—Na1xii105.23 (14)
O11i—Na1—O31—O41109.04 (7)Na1—O31—O51—Na1xii1.34 (11)
O21i—Na1—O31—O41121.62 (8)Na1xiii—O31—O51—Na1xii161.49 (5)
O41i—Na1—O31—O41129.43 (9)O41—O31—O51—Na1v167.48 (18)
O31iv—Na1—O31—O4186.57 (12)O51v—O31—O51—Na1v57.63 (10)
O51v—Na1—O31—O41114.68 (14)O41v—O31—O51—Na1v43.57 (6)
O51i—Na1—O31—O51v169.49 (16)O31v—O31—O51—Na1v57.63 (10)
O2ii—Na1—O31—O51v38.10 (11)Na1—O31—O51—Na1v161.53 (4)
O2iii—Na1—O31—O51v57.97 (11)Na1xiii—O31—O51—Na1v1.37 (10)
O22—Na1—O31—O51v157.51 (11)
Symmetry codes: (i) x+1/2, y, z+1/2; (ii) x+1/2, y1/2, z; (iii) x, y1/2, z+1/2; (iv) x+1/2, y, z+1/2; (v) x, y, z; (vi) x+1/2, y+1/2, z; (vii) x, y+1/2, z1/2; (viii) x1/2, y+1/2, z; (ix) x+1/2, y+1/2, z; (x) x, y+1/2, z+1/2; (xi) x, y+1/2, z+1/2; (xii) x1/2, y, z+1/2; (xiii) x+1/2, y, z1/2.
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.928 (5)1.679 (5)2.6007 (4)171.5 (5)
O12—H12···O2xi0.985 (5)1.628 (5)2.6011 (4)168.8 (5)
O21—H21···O2xi0.983 (5)1.646 (5)2.6207 (8)170.6 (5)
O22—H22···O10.939 (5)1.680 (5)2.6108 (9)170.6 (5)
O31—H31···O3vii0.925 (6)1.670 (6)2.5713 (6)163.8 (5)
O41—H31···O3vii0.949 (6)1.670 (6)2.5453 (6)151.7 (5)
O51—H51···O3vii1.042 (12)1.546 (12)2.5721 (14)167.1 (11)
Symmetry codes: (vii) x, y+1/2, z1/2; (xi) x, y+1/2, z+1/2.
(m50) top
Crystal data top
CH3Na2O6F(000) = 632
Mr = 157.01Dx = 2.164 Mg m3
Orthorhombic, PbcaMo Kα radiation, λ = 0.71073 Å
Hall symbol: -P 2ac 2abCell parameters from 4174 reflections
a = 6.6871 (2) Åθ = 1.0–27.5°
b = 15.7473 (6) ŵ = 0.37 mm1
c = 9.1540 (3) ÅT = 223 K
V = 963.95 (6) Å3Needle, colourless
Z = 80.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
1097 independent reflections
Radiation source: Enraf Nonius FR590885 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.061
ϕ and ω scans with κ offsetsθmax = 27.5°, θmin = 3.4°
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
h = 88
Tmin = 0.991, Tmax = 1.013k = 2017
7217 measured reflectionsl = 1111
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.029H atoms treated by a mixture of independent and constrained refinement
wR(F2) = 0.075 w = 1/[σ2(Fo2) + (0.0428P)2 + 0.0122P]
where P = (Fo2 + 2Fc2)/3
S = 1.05(Δ/σ)max = 0.024
1097 reflectionsΔρmax = 0.35 e Å3
133 parametersΔρmin = 0.27 e Å3
8 restraintsExtinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4
Primary atom site location: structure-invariant direct methodsExtinction coefficient: 0.0285 (8)
Crystal data top
CH3Na2O6V = 963.95 (6) Å3
Mr = 157.01Z = 8
Orthorhombic, PbcaMo Kα radiation
a = 6.6871 (2) ŵ = 0.37 mm1
b = 15.7473 (6) ÅT = 223 K
c = 9.1540 (3) Å0.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
1097 independent reflections
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
885 reflections with I > 2σ(I)
Tmin = 0.991, Tmax = 1.013Rint = 0.061
7217 measured reflections
Refinement top
R[F2 > 2σ(F2)] = 0.0298 restraints
wR(F2) = 0.075H atoms treated by a mixture of independent and constrained refinement
S = 1.05Δρmax = 0.35 e Å3
1097 reflectionsΔρmin = 0.27 e Å3
133 parameters
Special details top

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.

Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
C10.00323 (4)0.33784 (2)0.25101 (3)0.01270 (9)
Na10.252019 (17)0.010841 (9)0.259377 (12)0.02086 (4)
Na20.244250 (16)0.249544 (6)0.000289 (11)0.01821 (4)
O10.00742 (3)0.268156 (14)0.17749 (2)0.01698 (6)
O20.00348 (3)0.409614 (14)0.18393 (2)0.01711 (6)
O30.00561 (3)0.334717 (14)0.39111 (2)0.01753 (6)
O110.09835 (4)0.137977 (16)0.33923 (3)0.02185 (7)0.8787 (3)
O120.09228 (4)0.114145 (16)0.41051 (3)0.02105 (7)0.8787 (3)
O210.1010 (3)0.11381 (11)0.41150 (19)0.0227 (4)*0.1213 (3)
O220.0924 (3)0.13885 (12)0.3413 (2)0.0238 (4)*0.1213 (3)
O310.09040 (8)0.02525 (3)0.01711 (5)0.01996 (14)0.4534 (5)
O410.02391 (9)0.03419 (3)0.05258 (6)0.03215 (18)0.4616 (5)
O510.1017 (2)0.01720 (15)0.0111 (3)0.0723 (13)0.1038 (6)
H110.0532 (7)0.1815 (3)0.2788 (5)0.0401 (12)*0.8787 (3)
H120.0488 (6)0.1027 (3)0.5020 (5)0.0350 (12)*0.8787 (3)
H210.0532 (7)0.1027 (3)0.5020 (5)0.0350 (12)*0.1213 (3)
H220.0488 (6)0.1815 (3)0.2788 (5)0.0401 (12)*0.1213 (3)
H310.0332 (6)0.0791 (2)0.0233 (4)0.0413 (13)*0.916 (6)
H510.0785 (7)0.07852 (18)0.0322 (13)0.063 (17)*0.084 (6)
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C10.00969 (15)0.01478 (16)0.01363 (15)0.00028 (11)0.00009 (10)0.00055 (11)
Na10.01901 (8)0.01684 (7)0.02672 (7)0.00013 (5)0.00282 (5)0.00047 (5)
Na20.01573 (8)0.02125 (7)0.01765 (7)0.00038 (5)0.00061 (5)0.00274 (5)
O10.02127 (12)0.01473 (11)0.01494 (11)0.00087 (9)0.00037 (8)0.00185 (8)
O20.02219 (12)0.01382 (11)0.01533 (11)0.00002 (8)0.00062 (8)0.00145 (8)
O30.02343 (12)0.01626 (11)0.01290 (11)0.00054 (9)0.00012 (9)0.00016 (9)
O110.02303 (14)0.02121 (13)0.02130 (12)0.00344 (11)0.00625 (11)0.00341 (10)
O120.02283 (13)0.02454 (12)0.01579 (11)0.00614 (11)0.00037 (11)0.00196 (10)
O310.0224 (3)0.0199 (2)0.0175 (2)0.0020 (2)0.0063 (2)0.00209 (19)
O410.0657 (4)0.0128 (2)0.0180 (3)0.0023 (3)0.0059 (2)0.0002 (2)
O510.0302 (18)0.157 (3)0.0295 (14)0.013 (2)0.0031 (12)0.0281 (18)
Geometric parameters (Å, º) top
C1—O31.2836 (4)O11—H221.321 (4)
C1—O21.2870 (4)O12—O220.7431 (18)
C1—O11.2876 (4)O12—O211.2923 (17)
Na1—O51i2.319 (2)O12—Na2xi2.5114 (3)
Na1—O2ii2.3856 (3)O12—H120.905 (4)
Na1—O122.3877 (3)O12—H211.297 (5)
Na1—O2iii2.3936 (3)O21—O221.497 (2)
Na1—O222.4011 (18)O21—Na1xii2.4582 (18)
Na1—O11i2.4133 (3)O21—Na2xii2.5102 (18)
Na1—O21i2.4581 (18)O21—H121.312 (5)
Na1—O412.4588 (6)O21—H210.905 (5)
Na1—O312.4775 (5)O22—Na2xi2.4942 (18)
Na1—O41i2.5306 (6)O22—H111.314 (5)
Na1—O31iv2.6457 (5)O22—H220.929 (5)
Na1—O51v2.709 (2)O31—O410.5682 (8)
Na2—O1vi2.3380 (2)O31—O51v0.721 (2)
Na2—O3vii2.3538 (2)O31—O511.2921 (17)
Na2—O12.3594 (2)O31—O41v1.3665 (7)
Na2—O3i2.3655 (2)O31—O31v1.4807 (10)
Na2—O22vii2.4942 (18)O31—Na1xiii2.6457 (5)
Na2—O21i2.5102 (18)O31—H311.001 (3)
Na2—O12vii2.5114 (3)O31—H511.413 (4)
Na2—O11i2.5235 (3)O41—O510.9597 (19)
Na2—Na2vi3.3436 (1)O41—O51v1.125 (2)
Na2—Na2viii3.3436O41—O31v1.3665 (7)
O1—Na2viii2.3380 (2)O41—O41v1.4792 (11)
O2—Na1ix2.3856 (3)O41—Na1xii2.5306 (6)
O2—Na1x2.3936 (3)O41—H310.993 (3)
O3—Na2xi2.3538 (2)O41—H510.995 (4)
O3—Na2xii2.3655 (2)O51—O31v0.721 (2)
O11—O210.7634 (18)O51—O41v1.125 (2)
O11—O221.2760 (18)O51—O51v1.478 (3)
O11—O121.4804 (4)O51—Na1xii2.319 (2)
O11—Na1xii2.4133 (3)O51—Na1v2.709 (2)
O11—Na2xii2.5235 (3)O51—H311.365 (4)
O11—H110.931 (5)O51—H510.997 (4)
O3—C1—O2120.72 (3)Na2xi—O12—H1290.0 (3)
O3—C1—O1119.29 (3)O22—O12—H21128.6 (2)
O2—C1—O1119.99 (3)O21—O12—H2140.9 (2)
O51i—Na1—O2ii90.12 (5)O11—O12—H2171.0 (2)
O51i—Na1—O1268.56 (5)Na1—O12—H21127.96 (18)
O2ii—Na1—O12158.368 (9)Na2xi—O12—H21102.28 (19)
O51i—Na1—O2iii97.67 (5)H12—O12—H2129.9 (3)
O2ii—Na1—O2iii96.142 (10)O11—O21—O1288.22 (15)
O12—Na1—O2iii90.503 (9)O11—O21—O2258.47 (13)
O51i—Na1—O2282.42 (7)O12—O21—O2229.76 (8)
O2ii—Na1—O22162.95 (4)O11—O21—Na1xii77.68 (13)
O12—Na1—O2217.85 (4)O12—O21—Na1xii113.46 (10)
O2iii—Na1—O22100.03 (4)O22—O21—Na1xii104.26 (11)
O51i—Na1—O11i97.36 (5)O11—O21—Na2xii82.27 (14)
O2ii—Na1—O11i99.316 (9)O12—O21—Na2xii114.28 (10)
O12—Na1—O11i80.619 (10)O22—O21—Na2xii105.71 (11)
O2iii—Na1—O11i158.357 (10)Na1xii—O21—Na2xii127.07 (7)
O22—Na1—O11i66.72 (4)O11—O21—H12126.6 (3)
O51i—Na1—O21i112.28 (7)O12—O21—H1240.67 (19)
O2ii—Na1—O21i88.99 (4)O22—O21—H1269.3 (2)
O12—Na1—O21i95.64 (4)Na1xii—O21—H12128.3 (2)
O2iii—Na1—O21i149.62 (4)Na2xii—O21—H12103.0 (2)
O22—Na1—O21i79.80 (6)O11—O21—H21151.9 (4)
O11i—Na1—O21i18.00 (4)O12—O21—H2169.8 (3)
O51i—Na1—O41162.27 (5)O22—O21—H2198.0 (3)
O2ii—Na1—O41107.590 (14)Na1xii—O21—H21126.6 (3)
O12—Na1—O4193.824 (15)Na2xii—O21—H2190.8 (3)
O2iii—Na1—O4179.845 (14)H12—O21—H2129.1 (3)
O22—Na1—O4180.76 (4)O12—O22—O1190.34 (16)
O11i—Na1—O4181.095 (15)O12—O22—O2159.69 (14)
O21i—Na1—O4170.10 (4)O11—O22—O2130.66 (8)
O51i—Na1—O31172.20 (6)O12—O22—Na180.05 (14)
O2ii—Na1—O3195.800 (13)O11—O22—Na1115.50 (11)
O12—Na1—O31105.134 (14)O21—O22—Na1107.27 (12)
O2iii—Na1—O3186.774 (13)O12—O22—Na2xi82.78 (14)
O22—Na1—O3190.51 (4)O11—O22—Na2xi115.05 (11)
O11i—Na1—O3176.705 (13)O21—O22—Na2xi106.74 (11)
O21i—Na1—O3162.90 (4)Na1—O22—Na2xi126.32 (7)
O41—Na1—O3113.213 (18)O12—O22—H11129.6 (3)
O51i—Na1—O41i22.28 (5)O11—O22—H1142.1 (2)
O2ii—Na1—O41i78.556 (14)O21—O22—H1171.4 (2)
O12—Na1—O41i80.114 (14)Na1—O22—H11128.5 (2)
O2iii—Na1—O41i117.522 (14)Na2xi—O22—H11101.2 (2)
O22—Na1—O41i89.13 (4)O12—O22—H22154.5 (4)
O11i—Na1—O41i80.563 (14)O11—O22—H2271.6 (3)
O21i—Na1—O41i92.85 (4)O21—O22—H22100.6 (3)
O41—Na1—O41i161.39 (2)Na1—O22—H22123.6 (3)
O31—Na1—O41i155.370 (18)Na2xi—O22—H2288.7 (3)
O51i—Na1—O31iv14.91 (6)H11—O22—H2229.5 (3)
O2ii—Na1—O31iv80.888 (12)O41—O31—O51v121.11 (18)
O12—Na1—O31iv78.923 (13)O41—O31—O5143.15 (13)
O2iii—Na1—O31iv87.012 (13)O51v—O31—O5189.90 (16)
O22—Na1—O31iv94.51 (4)O41—O31—O41v89.92 (8)
O11i—Na1—O31iv110.282 (13)O51v—O31—O41v41.92 (14)
O21i—Na1—O31iv123.36 (4)O51—O31—O41v49.98 (11)
O41—Na1—O31iv164.968 (18)O41—O31—O31v67.35 (8)
O31—Na1—O31iv172.605 (6)O51v—O31—O31v60.76 (13)
O41i—Na1—O31iv30.510 (16)O51—O31—O31v29.13 (10)
O51i—Na1—O51v172.525 (13)O41v—O31—O31v22.57 (3)
O2ii—Na1—O51v83.15 (4)O41—O31—Na181.52 (7)
O12—Na1—O51v118.34 (4)O51v—O31—Na1100.98 (19)
O2iii—Na1—O51v79.91 (4)O51—O31—Na1117.55 (11)
O22—Na1—O51v104.93 (6)O41v—O31—Na1126.81 (3)
O11i—Na1—O51v86.97 (5)O31v—O31—Na1119.76 (4)
O21i—Na1—O51v70.99 (6)O41—O31—Na1xiii150.97 (8)
O41—Na1—O51v24.54 (4)O51v—O31—Na1xiii55.87 (19)
O31—Na1—O51v15.14 (5)O51—O31—Na1xiii109.71 (11)
O41i—Na1—O51v155.80 (4)O41v—O31—Na1xiii70.08 (3)
O31iv—Na1—O51v158.12 (5)O31v—O31—Na1xiii91.21 (4)
O1vi—Na2—O3vii98.276 (8)Na1—O31—Na1xiii127.21 (2)
O1vi—Na2—O1179.593 (7)O41—O31—H3172.7 (2)
O3vii—Na2—O181.663 (8)O51v—O31—H31133.9 (3)
O1vi—Na2—O3i81.864 (8)O51—O31—H3171.8 (2)
O3vii—Na2—O3i179.756 (8)O41v—O31—H31101.2 (2)
O1—Na2—O3i98.196 (8)O31v—O31—H3193.7 (2)
O1vi—Na2—O22vii88.27 (4)Na1—O31—H31125.1 (2)
O3vii—Na2—O22vii82.11 (4)Na1xiii—O31—H3190.3 (2)
O1—Na2—O22vii91.32 (4)O41—O31—H5134.1 (4)
O3i—Na2—O22vii97.69 (4)O51v—O31—H51132.0 (3)
O1vi—Na2—O21i80.23 (4)O51—O31—H5142.94 (19)
O3vii—Na2—O21i87.10 (4)O41v—O31—H5190.3 (3)
O1—Na2—O21i100.17 (4)O31v—O31—H5171.76 (19)
O3i—Na2—O21i93.12 (4)Na1—O31—H51108.4 (5)
O22vii—Na2—O21i162.95 (6)Na1xiii—O31—H51122.2 (5)
O1vi—Na2—O12vii99.423 (9)H31—O31—H5139.5 (4)
O3vii—Na2—O12vii93.283 (9)O31—O41—O51112.97 (16)
O1—Na2—O12vii80.181 (8)O31—O41—O51v33.27 (12)
O3i—Na2—O12vii86.496 (9)O51—O41—O51v89.97 (14)
O22vii—Na2—O12vii17.07 (4)O31—O41—O31v90.08 (8)
O21i—Na2—O12vii179.52 (4)O51—O41—O31v30.12 (13)
O1vi—Na2—O11i91.495 (9)O51v—O41—O31v61.57 (10)
O3vii—Na2—O11i98.647 (9)O31—O41—O41v67.49 (7)
O1—Na2—O11i88.913 (9)O51—O41—O41v49.52 (13)
O3i—Na2—O11i81.546 (9)O51v—O41—O41v40.45 (10)
O22vii—Na2—O11i179.23 (4)O31v—O41—O41v22.59 (3)
O21i—Na2—O11i17.44 (4)O31—O41—Na185.26 (8)
O12vii—Na2—O11i162.515 (9)O51—O41—Na1143.67 (15)
O1vi—Na2—Na2vi44.876 (6)O51v—O41—Na190.27 (12)
O3vii—Na2—Na2vi135.472 (7)O31v—O41—Na1127.16 (4)
O1—Na2—Na2vi135.371 (7)O41v—O41—Na1121.76 (5)
O3i—Na2—Na2vi44.747 (6)O31—O41—Na1xii156.19 (8)
O22vii—Na2—Na2vi113.89 (4)O51—O41—Na1xii66.39 (15)
O21i—Na2—Na2vi65.84 (4)O51v—O41—Na1xii125.48 (12)
O12vii—Na2—Na2vi113.671 (8)O31v—O41—Na1xii79.41 (3)
O11i—Na2—Na2vi65.479 (7)O41v—O41—Na1xii100.46 (5)
O1vi—Na2—Na2viii135.386 (8)Na1—O41—Na1xii84.278 (17)
O3vii—Na2—Na2viii45.030 (6)O31—O41—H3174.2 (2)
O1—Na2—Na2viii44.363 (6)O51—O41—H3188.7 (3)
O3i—Na2—Na2viii134.750 (7)O51v—O41—H3197.0 (2)
O22vii—Na2—Na2viii65.85 (4)O31v—O41—H31101.4 (2)
O21i—Na2—Na2viii114.55 (4)O41v—O41—H3194.4 (2)
O12vii—Na2—Na2viii65.934 (7)Na1—O41—H31127.3 (2)
O11i—Na2—Na2viii114.781 (8)Na1xii—O41—H31128.6 (2)
Na2vi—Na2—Na2viii179.476 (7)O31—O41—H51127.2 (6)
C1—O1—Na2viii118.664 (18)O51—O41—H5161.3 (3)
C1—O1—Na2116.797 (17)O51v—O41—H51136.5 (7)
Na2viii—O1—Na290.761 (8)O31v—O41—H5190.5 (4)
C1—O2—Na1ix118.198 (18)O41v—O41—H51103.9 (5)
C1—O2—Na1x117.162 (17)Na1—O41—H51132.5 (6)
Na1ix—O2—Na1x88.937 (9)Na1xii—O41—H5174.7 (6)
C1—O3—Na2xi115.774 (18)H31—O41—H5154.0 (6)
C1—O3—Na2xii116.915 (18)O31v—O51—O41108.0 (2)
Na2xi—O3—Na2xii90.222 (8)O31v—O51—O41v25.62 (9)
O21—O11—O2290.86 (15)O41—O51—O41v90.03 (14)
O21—O11—O1260.75 (13)O31v—O51—O3190.10 (16)
O22—O11—O1230.13 (8)O41—O51—O3123.89 (6)
O21—O11—Na1xii84.32 (13)O41v—O51—O3168.45 (10)
O22—O11—Na1xii115.41 (8)O31v—O51—O51v60.92 (17)
O12—O11—Na1xii108.153 (16)O41—O51—O51v49.55 (11)
O21—O11—Na2xii80.29 (13)O41v—O51—O51v40.48 (12)
O22—O11—Na2xii113.62 (8)O31—O51—O51v29.18 (9)
O12—O11—Na2xii106.151 (16)O31v—O51—Na1xii109.2 (2)
Na1xii—O11—Na2xii128.547 (12)O41—O51—Na1xii91.33 (17)
O21—O11—H11152.8 (3)O41v—O51—Na1xii129.31 (17)
O22—O11—H1171.1 (3)O31—O51—Na1xii112.66 (14)
O12—O11—H1199.7 (3)O51v—O51—Na1xii119.8 (2)
Na1xii—O11—H11121.5 (3)O31v—O51—Na1v63.88 (18)
Na2xii—O11—H1188.3 (3)O41—O51—Na1v137.01 (18)
O21—O11—H22129.7 (2)O41v—O51—Na1v65.19 (12)
O22—O11—H2241.9 (2)O31—O51—Na1v115.06 (14)
O12—O11—H2270.99 (19)O51v—O51—Na1v98.9 (2)
Na1xii—O11—H22125.64 (19)Na1xii—O51—Na1v131.64 (7)
Na2xii—O11—H22101.2 (2)O31v—O51—H31120.7 (3)
H11—O11—H2229.3 (3)O41—O51—H3146.66 (18)
O22—O12—O2190.54 (16)O41v—O51—H3195.1 (2)
O22—O12—O1159.53 (14)O31—O51—H3144.16 (17)
O21—O12—O1131.03 (8)O51v—O51—H3167.8 (2)
O22—O12—Na182.10 (14)Na1xii—O51—H31121.2 (2)
O21—O12—Na1116.65 (8)Na1v—O51—H3198.67 (19)
O11—O12—Na1107.613 (16)O31v—O51—H51162.1 (5)
O22—O12—Na2xi80.15 (14)O41—O51—H5161.1 (4)
O21—O12—Na2xi113.95 (8)O41v—O51—H51136.4 (5)
O11—O12—Na2xi105.966 (16)O31—O51—H5175.0 (3)
Na1—O12—Na2xi126.135 (12)O51v—O51—H51103.8 (3)
O22—O12—H12153.4 (3)Na1xii—O51—H5186.2 (7)
O21—O12—H1270.8 (3)Na1v—O51—H51113.1 (7)
O11—O12—H12100.5 (3)H31—O51—H5141.4 (5)
Na1—O12—H12122.9 (3)
O3—C1—O1—Na2viii125.57 (2)O22—Na1—O31—O51v162.40 (16)
O2—C1—O1—Na2viii54.50 (3)O11i—Na1—O31—O51v131.69 (15)
O3—C1—O1—Na2127.39 (2)O21i—Na1—O31—O51v119.34 (16)
O2—C1—O1—Na252.54 (3)O41—Na1—O31—O51v120.21 (18)
O1vi—Na2—O1—C170.8 (12)O41i—Na1—O31—O51v108.57 (16)
O3vii—Na2—O1—C1152.31 (2)O31iv—Na1—O31—O51v29.53 (18)
O3i—Na2—O1—C127.49 (2)O51i—Na1—O31—O5191.7 (3)
O22vii—Na2—O1—C170.47 (5)O2ii—Na1—O31—O51129.15 (12)
O21i—Na2—O1—C1122.18 (4)O12—Na1—O31—O5156.35 (12)
O12vii—Na2—O1—C157.48 (2)O2iii—Na1—O31—O5133.30 (12)
O11i—Na2—O1—C1108.79 (2)O22—Na1—O31—O5166.72 (13)
Na2vi—Na2—O1—C156.39 (2)O11i—Na1—O31—O51132.62 (12)
Na2viii—Na2—O1—C1122.97 (2)O21i—Na1—O31—O51144.97 (13)
O1vi—Na2—O1—Na2viii52.1 (12)O41—Na1—O31—O5124.53 (13)
O3vii—Na2—O1—Na2viii29.339 (7)O41i—Na1—O31—O51155.74 (12)
O3i—Na2—O1—Na2viii150.460 (9)O31iv—Na1—O31—O5166.16 (15)
O22vii—Na2—O1—Na2viii52.49 (4)O51v—Na1—O31—O5195.69 (17)
O21i—Na2—O1—Na2viii114.85 (4)O51i—Na1—O31—O41v150.6 (3)
O12vii—Na2—O1—Na2viii65.485 (8)O2ii—Na1—O31—O41v70.19 (5)
O11i—Na2—O1—Na2viii128.242 (9)O12—Na1—O31—O41v115.32 (5)
Na2vi—Na2—O1—Na2viii179.355 (10)O2iii—Na1—O31—O41v25.67 (5)
O3—C1—O2—Na1ix49.06 (3)O22—Na1—O31—O41v125.68 (6)
O1—C1—O2—Na1ix130.87 (2)O11i—Na1—O31—O41v168.42 (5)
O3—C1—O2—Na1x55.51 (3)O21i—Na1—O31—O41v156.06 (7)
O1—C1—O2—Na1x124.56 (2)O41—Na1—O31—O41v83.49 (9)
O2—C1—O3—Na2xi125.51 (2)O41i—Na1—O31—O41v145.29 (4)
O1—C1—O3—Na2xi54.42 (3)O31iv—Na1—O31—O41v7.20 (10)
O2—C1—O3—Na2xii130.01 (2)O51v—Na1—O31—O41v36.72 (15)
O1—C1—O3—Na2xii50.06 (3)O51i—Na1—O31—O31v124.9 (3)
O21—O11—O12—O22178.1 (2)O2ii—Na1—O31—O31v95.93 (5)
Na1xii—O11—O12—O22109.56 (17)O12—Na1—O31—O31v89.57 (5)
Na2xii—O11—O12—O22109.39 (17)O2iii—Na1—O31—O31v0.08 (5)
O22—O11—O12—O21178.1 (2)O22—Na1—O31—O31v99.93 (7)
Na1xii—O11—O12—O2172.36 (15)O11i—Na1—O31—O31v165.84 (5)
Na2xii—O11—O12—O2168.69 (15)O21i—Na1—O31—O31v178.19 (7)
O21—O11—O12—Na1112.67 (15)O41—Na1—O31—O31v57.74 (7)
O22—O11—O12—Na169.26 (17)O41i—Na1—O31—O31v171.04 (4)
Na1xii—O11—O12—Na140.303 (17)O31iv—Na1—O31—O31v32.94 (11)
Na2xii—O11—O12—Na1178.646 (9)O51v—Na1—O31—O31v62.47 (16)
O21—O11—O12—Na2xi110.08 (15)O51i—Na1—O31—Na1xiii117.4 (3)
O22—O11—O12—Na2xi67.99 (17)O2ii—Na1—O31—Na1xiii21.77 (2)
Na1xii—O11—O12—Na2xi177.554 (9)O12—Na1—O31—Na1xiii152.73 (2)
Na2xii—O11—O12—Na2xi41.395 (16)O2iii—Na1—O31—Na1xiii117.62 (2)
O51i—Na1—O12—O22139.23 (15)O22—Na1—O31—Na1xiii142.37 (5)
O2ii—Na1—O12—O22129.07 (14)O11i—Na1—O31—Na1xiii76.47 (2)
O2iii—Na1—O12—O22122.73 (14)O21i—Na1—O31—Na1xiii64.11 (5)
O11i—Na1—O12—O2237.43 (14)O41—Na1—O31—Na1xiii175.44 (9)
O21i—Na1—O12—O2227.47 (14)O41i—Na1—O31—Na1xiii53.34 (5)
O41—Na1—O12—O2242.88 (14)O31iv—Na1—O31—Na1xiii84.75 (8)
O31—Na1—O12—O2235.94 (14)O51v—Na1—O31—Na1xiii55.23 (15)
O41i—Na1—O12—O22119.39 (14)O51v—O31—O41—O5149.7 (4)
O31iv—Na1—O12—O22150.41 (14)O41v—O31—O41—O5120.15 (16)
O51v—Na1—O12—O2243.94 (15)O31v—O31—O41—O5120.15 (16)
O51i—Na1—O12—O21134.15 (10)Na1—O31—O41—O51147.44 (17)
O2ii—Na1—O12—O21144.31 (9)Na1xiii—O31—O41—O5125.1 (3)
O2iii—Na1—O12—O2136.11 (9)O51—O31—O41—O51v49.7 (4)
O22—Na1—O12—O2186.62 (16)O41v—O31—O41—O51v29.5 (2)
O11i—Na1—O12—O21124.05 (9)O31v—O31—O41—O51v29.5 (2)
O21i—Na1—O12—O21114.09 (8)Na1—O31—O41—O51v97.8 (2)
O41—Na1—O12—O2143.74 (9)Na1xiii—O31—O41—O51v74.8 (3)
O31—Na1—O12—O2150.68 (9)O51v—O31—O41—O31v29.5 (2)
O41i—Na1—O12—O21153.99 (9)O51—O31—O41—O31v20.15 (16)
O31iv—Na1—O12—O21122.97 (9)O41v—O31—O41—O31v0
O51v—Na1—O12—O2142.68 (10)Na1—O31—O41—O31v127.30 (4)
O51i—Na1—O12—O11166.31 (6)Na1xiii—O31—O41—O31v45.21 (15)
O2ii—Na1—O12—O11176.47 (2)O51v—O31—O41—O41v29.5 (2)
O2iii—Na1—O12—O1168.266 (17)O51—O31—O41—O41v20.15 (16)
O22—Na1—O12—O1154.47 (14)O31v—O31—O41—O41v0
O11i—Na1—O12—O1191.901 (15)Na1—O31—O41—O41v127.30 (3)
O21i—Na1—O12—O1181.94 (4)Na1xiii—O31—O41—O41v45.21 (15)
O41—Na1—O12—O1111.59 (2)O51v—O31—O41—Na197.8 (2)
O31—Na1—O12—O1118.53 (2)O51—O31—O41—Na1147.44 (17)
O41i—Na1—O12—O11173.86 (2)O41v—O31—O41—Na1127.30 (3)
O31iv—Na1—O12—O11155.12 (2)O31v—O31—O41—Na1127.30 (4)
O51v—Na1—O12—O1110.53 (5)Na1xiii—O31—O41—Na1172.51 (15)
O51i—Na1—O12—Na2xi67.60 (6)O51v—O31—O41—Na1xii33.6 (3)
O2ii—Na1—O12—Na2xi57.44 (3)O51—O31—O41—Na1xii83.3 (3)
O2iii—Na1—O12—Na2xi165.639 (12)O41v—O31—O41—Na1xii63.12 (19)
O22—Na1—O12—Na2xi71.63 (14)O31v—O31—O41—Na1xii63.12 (19)
O11i—Na1—O12—Na2xi34.194 (13)Na1—O31—O41—Na1xii64.18 (19)
O21i—Na1—O12—Na2xi44.15 (4)Na1xiii—O31—O41—Na1xii108.3 (2)
O41—Na1—O12—Na2xi114.506 (17)O51i—Na1—O41—O31155.76 (18)
O31—Na1—O12—Na2xi107.567 (17)O2ii—Na1—O41—O3127.57 (8)
O41i—Na1—O12—Na2xi47.764 (17)O12—Na1—O41—O31149.33 (7)
O31iv—Na1—O12—Na2xi78.782 (16)O2iii—Na1—O41—O31120.85 (7)
O51v—Na1—O12—Na2xi115.57 (5)O22—Na1—O41—O31137.12 (9)
O22—O11—O21—O120.97 (11)O11i—Na1—O41—O3169.45 (7)
Na1xii—O11—O21—O12114.49 (8)O21i—Na1—O41—O3154.71 (8)
Na2xii—O11—O21—O12114.79 (9)O41i—Na1—O41—O3179.25 (10)
O12—O11—O21—O220.97 (11)O31iv—Na1—O41—O31150.25 (4)
Na1xii—O11—O21—O22115.46 (8)O51v—Na1—O41—O3132.93 (12)
Na2xii—O11—O21—O22113.82 (9)O51i—Na1—O41—O5180.99 (18)
O22—O11—O21—Na1xii115.46 (8)O2ii—Na1—O41—O5195.7 (2)
O12—O11—O21—Na1xii114.49 (8)O12—Na1—O41—O5187.4 (2)
Na2xii—O11—O21—Na1xii130.72 (3)O2iii—Na1—O41—O512.4 (2)
O22—O11—O21—Na2xii113.82 (9)O22—Na1—O41—O5199.6 (2)
O12—O11—O21—Na2xii114.79 (9)O11i—Na1—O41—O51167.3 (2)
Na1xii—O11—O21—Na2xii130.72 (3)O21i—Na1—O41—O51178.0 (2)
O22—O12—O21—O111.7 (2)O31—Na1—O41—O51123.2 (3)
Na1—O12—O21—O1179.77 (15)O41i—Na1—O41—O51157.5 (2)
Na2xi—O12—O21—O1181.12 (14)O31iv—Na1—O41—O5127.0 (3)
O11—O12—O21—O221.7 (2)O51v—Na1—O41—O5190.3 (2)
Na1—O12—O21—O2281.42 (15)O51i—Na1—O41—O51v171.31 (13)
Na2xi—O12—O21—O2279.46 (15)O2ii—Na1—O41—O51v5.36 (11)
O22—O12—O21—Na1xii77.40 (16)O12—Na1—O41—O51v177.75 (11)
O11—O12—O21—Na1xii75.74 (14)O2iii—Na1—O41—O51v87.92 (11)
Na1—O12—O21—Na1xii4.02 (12)O22—Na1—O41—O51v170.05 (12)
Na2xi—O12—O21—Na1xii156.86 (5)O11i—Na1—O41—O51v102.38 (11)
O22—O12—O21—Na2xii79.04 (16)O21i—Na1—O41—O51v87.63 (12)
O11—O12—O21—Na2xii80.70 (15)O31—Na1—O41—O51v32.93 (12)
Na1—O12—O21—Na2xii160.46 (4)O41i—Na1—O41—O51v112.17 (13)
Na2xi—O12—O21—Na2xii0.42 (11)O31iv—Na1—O41—O51v117.32 (13)
O21—O12—O22—O110.99 (12)O51i—Na1—O41—O31v117.73 (18)
Na1—O12—O22—O11115.86 (9)O2ii—Na1—O41—O31v58.94 (5)
Na2xi—O12—O22—O11115.22 (10)O12—Na1—O41—O31v124.17 (5)
O11—O12—O22—O210.99 (12)O2iii—Na1—O41—O31v34.34 (5)
Na1—O12—O22—O21116.85 (8)O22—Na1—O41—O31v136.37 (7)
Na2xi—O12—O22—O21114.22 (8)O11i—Na1—O41—O31v155.96 (5)
O21—O12—O22—Na1116.85 (8)O21i—Na1—O41—O31v141.21 (7)
O11—O12—O22—Na1115.86 (9)O31—Na1—O41—O31v86.50 (9)
Na2xi—O12—O22—Na1128.93 (4)O41i—Na1—O41—O31v165.75 (5)
O21—O12—O22—Na2xi114.22 (8)O31iv—Na1—O41—O31v63.74 (9)
O11—O12—O22—Na2xi115.22 (10)O51v—Na1—O41—O31v53.58 (11)
Na1—O12—O22—Na2xi128.93 (4)O51i—Na1—O41—O41v144.44 (18)
O21—O11—O22—O121.7 (2)O2ii—Na1—O41—O41v32.23 (7)
Na1xii—O11—O22—O1282.44 (15)O12—Na1—O41—O41v150.87 (6)
Na2xii—O11—O22—O1281.45 (15)O2iii—Na1—O41—O41v61.05 (6)
O12—O11—O22—O211.7 (2)O22—Na1—O41—O41v163.08 (8)
Na1xii—O11—O22—O2184.12 (14)O11i—Na1—O41—O41v129.25 (6)
Na2xii—O11—O22—O2179.77 (14)O21i—Na1—O41—O41v114.51 (8)
O21—O11—O22—Na180.81 (16)O31—Na1—O41—O41v59.80 (8)
O12—O11—O22—Na179.13 (15)O41i—Na1—O41—O41v139.05 (6)
Na1xii—O11—O22—Na13.31 (13)O31iv—Na1—O41—O41v90.45 (9)
Na2xii—O11—O22—Na1160.59 (5)O51v—Na1—O41—O41v26.87 (11)
O21—O11—O22—Na2xi80.50 (16)O51i—Na1—O41—Na1xii45.66 (18)
O12—O11—O22—Na2xi82.18 (16)O2ii—Na1—O41—Na1xii131.010 (11)
Na1xii—O11—O22—Na2xi164.63 (5)O12—Na1—O41—Na1xii52.097 (14)
Na2xii—O11—O22—Na2xi0.73 (12)O2iii—Na1—O41—Na1xii37.729 (12)
O11—O21—O22—O12178.1 (2)O22—Na1—O41—Na1xii64.30 (4)
Na1xii—O21—O22—O12112.53 (15)O11i—Na1—O41—Na1xii131.970 (14)
Na2xii—O21—O22—O12111.61 (15)O21i—Na1—O41—Na1xii146.71 (5)
O12—O21—O22—O11178.1 (2)O31—Na1—O41—Na1xii158.58 (8)
Na1xii—O21—O22—O1165.53 (12)O41i—Na1—O41—Na1xii122.18 (6)
Na2xii—O21—O22—O1170.33 (13)O31iv—Na1—O41—Na1xii8.33 (7)
O11—O21—O22—Na1111.09 (14)O51v—Na1—O41—Na1xii125.65 (11)
O12—O21—O22—Na166.97 (13)O31—O41—O51—O31v43.3 (3)
Na1xii—O21—O22—Na145.56 (11)O51v—O41—O51—O31v18.61 (15)
Na2xii—O21—O22—Na1178.58 (6)O41v—O41—O51—O31v18.61 (15)
O11—O21—O22—Na2xi111.08 (14)Na1—O41—O51—O31v71.8 (4)
O12—O21—O22—Na2xi70.86 (13)Na1xii—O41—O51—O31v110.7 (3)
Na1xii—O21—O22—Na2xi176.61 (6)O31—O41—O51—O41v24.7 (2)
Na2xii—O21—O22—Na2xi40.75 (11)O51v—O41—O51—O41v0
O51i—Na1—O22—O1237.82 (14)O31v—O41—O51—O41v18.61 (15)
O2ii—Na1—O22—O12102.57 (17)Na1—O41—O51—O41v90.4 (2)
O2iii—Na1—O22—O1258.67 (14)Na1xii—O41—O51—O41v129.32 (17)
O11i—Na1—O22—O12139.24 (15)O51v—O41—O51—O3124.7 (2)
O21i—Na1—O22—O12152.19 (14)O31v—O41—O51—O3143.3 (3)
O41—Na1—O22—O12136.54 (14)O41v—O41—O51—O3124.7 (2)
O31—Na1—O22—O12145.49 (13)Na1—O41—O51—O31115.1 (2)
O41i—Na1—O22—O1259.14 (13)Na1xii—O41—O51—O31154.05 (9)
O31iv—Na1—O22—O1229.08 (14)O31—O41—O51—O51v24.7 (2)
O51v—Na1—O22—O12140.80 (13)O31v—O41—O51—O51v18.61 (15)
O51i—Na1—O22—O11123.41 (12)O41v—O41—O51—O51v0
O2ii—Na1—O22—O11171.85 (4)Na1—O41—O51—O51v90.4 (2)
O12—Na1—O22—O1185.58 (17)Na1xii—O41—O51—O51v129.32 (17)
O2iii—Na1—O22—O1126.91 (12)O31—O41—O51—Na1xii154.05 (9)
O11i—Na1—O22—O11135.18 (12)O51v—O41—O51—Na1xii129.32 (17)
O21i—Na1—O22—O11122.22 (12)O31v—O41—O51—Na1xii110.7 (3)
O41—Na1—O22—O1150.96 (11)O41v—O41—O51—Na1xii129.32 (17)
O31—Na1—O22—O1159.90 (11)Na1—O41—O51—Na1xii38.9 (2)
O41i—Na1—O22—O11144.73 (11)O31—O41—O51—Na1v27.3 (3)
O31iv—Na1—O22—O11114.67 (11)O51v—O41—O51—Na1v52.06 (17)
O51v—Na1—O22—O1155.21 (13)O31v—O41—O51—Na1v70.7 (3)
O51i—Na1—O22—O2191.59 (12)O41v—O41—O51—Na1v52.06 (17)
O2ii—Na1—O22—O21156.33 (10)Na1—O41—O51—Na1v142.47 (15)
O12—Na1—O22—O2153.77 (13)Na1xii—O41—O51—Na1v178.6 (3)
O2iii—Na1—O22—O214.91 (12)O41—O31—O51—O31v139.2 (3)
O11i—Na1—O22—O21166.99 (13)O51v—O31—O51—O31v0
O21i—Na1—O22—O21154.04 (12)O41v—O31—O51—O31v14.03 (12)
O41—Na1—O22—O2182.77 (11)Na1—O31—O51—O31v102.3 (2)
O31—Na1—O22—O2191.72 (11)Na1xiii—O31—O51—O31v53.4 (2)
O41i—Na1—O22—O21112.91 (11)O51v—O31—O51—O41139.2 (3)
O31iv—Na1—O22—O2182.85 (11)O41v—O31—O51—O41153.3 (2)
O51v—Na1—O22—O2187.03 (12)O31v—O31—O51—O41139.2 (3)
O51i—Na1—O22—Na2xi35.48 (9)Na1—O31—O51—O4136.89 (18)
O2ii—Na1—O22—Na2xi29.3 (2)Na1xiii—O31—O51—O41167.39 (13)
O12—Na1—O22—Na2xi73.30 (14)O41—O31—O51—O41v153.3 (2)
O2iii—Na1—O22—Na2xi131.98 (8)O51v—O31—O51—O41v14.03 (12)
O11i—Na1—O22—Na2xi65.94 (8)O31v—O31—O51—O41v14.03 (12)
O21i—Na1—O22—Na2xi78.89 (9)Na1—O31—O51—O41v116.38 (9)
O41—Na1—O22—Na2xi150.16 (9)Na1xiii—O31—O51—O41v39.34 (13)
O31—Na1—O22—Na2xi141.21 (8)O41—O31—O51—O51v139.2 (3)
O41i—Na1—O22—Na2xi14.16 (8)O41v—O31—O51—O51v14.03 (12)
O31iv—Na1—O22—Na2xi44.22 (9)O31v—O31—O51—O51v0
O51v—Na1—O22—Na2xi145.90 (9)Na1—O31—O51—O51v102.3 (2)
O51i—Na1—O31—O4167.1 (4)Na1xiii—O31—O51—O51v53.4 (2)
O2ii—Na1—O31—O41153.68 (7)O41—O31—O51—Na1xii28.30 (11)
O12—Na1—O31—O4131.82 (8)O51v—O31—O51—Na1xii110.9 (3)
O2iii—Na1—O31—O4157.82 (7)O41v—O31—O51—Na1xii124.98 (18)
O22—Na1—O31—O4142.19 (8)O31v—O31—O51—Na1xii110.9 (3)
O11i—Na1—O31—O41108.09 (7)Na1—O31—O51—Na1xii8.60 (16)
O21i—Na1—O31—O41120.44 (9)Na1xiii—O31—O51—Na1xii164.32 (7)
O41i—Na1—O31—O41131.21 (9)O41—O31—O51—Na1v159.8 (2)
O31iv—Na1—O31—O4190.69 (11)O51v—O31—O51—Na1v60.97 (18)
O51v—Na1—O31—O41120.21 (18)O41v—O31—O51—Na1v46.94 (9)
O51i—Na1—O31—O51v172.6 (3)O31v—O31—O51—Na1v60.97 (18)
O2ii—Na1—O31—O51v33.46 (15)Na1—O31—O51—Na1v163.32 (6)
O12—Na1—O31—O51v152.04 (15)Na1xiii—O31—O51—Na1v7.60 (14)
O2iii—Na1—O31—O51v62.39 (15)
Symmetry codes: (i) x+1/2, y, z+1/2; (ii) x+1/2, y1/2, z; (iii) x, y1/2, z+1/2; (iv) x+1/2, y, z+1/2; (v) x, y, z; (vi) x+1/2, y+1/2, z; (vii) x, y+1/2, z1/2; (viii) x1/2, y+1/2, z; (ix) x+1/2, y+1/2, z; (x) x, y+1/2, z+1/2; (xi) x, y+1/2, z+1/2; (xii) x1/2, y, z+1/2; (xiii) x+1/2, y, z1/2.
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.931 (5)1.679 (5)2.6008 (3)170.4 (4)
O12—H12···O2xi0.905 (4)1.703 (4)2.5994 (3)170.0 (4)
O21—H21···O2xi0.905 (5)1.719 (4)2.6158 (18)170.6 (5)
O22—H22···O10.929 (5)1.693 (4)2.6157 (18)171.9 (4)
O31—H31···O3vii1.00 (1)1.59 (1)2.5700 (5)166 (1)
O41—H31···O3vii0.99 (1)1.59 (1)2.5467 (6)161 (1)
O51—H51···O3vii1.00 (1)1.94 (1)2.657 (2)126 (1)
Symmetry codes: (vii) x, y+1/2, z1/2; (xi) x, y+1/2, z+1/2.
(k150a) top
Crystal data top
CH3Na2O6F(000) = 632
Mr = 157.01Dx = 2.179 Mg m3
Orthorhombic, PbcaMo Kα radiation, λ = 0.71073 Å
Hall symbol: -P 2ac 2abCell parameters from 2893 reflections
a = 6.6592 (2) Åθ = 1.0–27.5°
b = 15.7511 (8) ŵ = 0.37 mm1
c = 9.1254 (4) ÅT = 150 K
V = 957.16 (7) Å3Plate, colourless
Z = 80.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
1092 independent reflections
Radiation source: Enraf Nonius FR590875 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.049
ϕ and ω scans with κ offsetsθmax = 27.5°, θmin = 3.4°
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
h = 78
Tmin = 0.93, Tmax = 0.975k = 2017
5477 measured reflectionsl = 1011
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.027All H-atom parameters refined
wR(F2) = 0.064 w = 1/[σ2(Fo2) + (0.0296P)2]
where P = (Fo2 + 2Fc2)/3
S = 1.03(Δ/σ)max = 0.004
1092 reflectionsΔρmax = 0.23 e Å3
105 parametersΔρmin = 0.29 e Å3
0 restraintsExtinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4
Primary atom site location: structure-invariant direct methodsExtinction coefficient: 0.0150 (11)
Crystal data top
CH3Na2O6V = 957.16 (7) Å3
Mr = 157.01Z = 8
Orthorhombic, PbcaMo Kα radiation
a = 6.6592 (2) ŵ = 0.37 mm1
b = 15.7511 (8) ÅT = 150 K
c = 9.1254 (4) Å0.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
1092 independent reflections
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
875 reflections with I > 2σ(I)
Tmin = 0.93, Tmax = 0.975Rint = 0.049
5477 measured reflections
Refinement top
R[F2 > 2σ(F2)] = 0.0270 restraints
wR(F2) = 0.064All H-atom parameters refined
S = 1.03Δρmax = 0.23 e Å3
1092 reflectionsΔρmin = 0.29 e Å3
105 parameters
Special details top

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.

Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
C10.00404 (8)0.33813 (5)0.25197 (9)0.0102 (2)
Na10.25355 (4)0.01082 (2)0.26340 (3)0.01531 (9)
Na20.24247 (4)0.249537 (18)0.00014 (3)0.01371 (10)
O10.01028 (7)0.26850 (3)0.17777 (7)0.01302 (15)
O20.00461 (7)0.40994 (4)0.18480 (7)0.01311 (15)
O30.00723 (6)0.33487 (4)0.39252 (7)0.01354 (15)
O110.09986 (8)0.13774 (3)0.33929 (7)0.01697 (15)
O120.09177 (8)0.11475 (3)0.41085 (7)0.01640 (14)
O310.08711 (13)0.02639 (6)0.02090 (11)0.0193 (3)0.7242 (18)
O410.0247 (4)0.03343 (16)0.0540 (3)0.0211 (7)0.2758 (18)
H110.0491 (15)0.1856 (7)0.2752 (14)0.047 (3)*
H120.0407 (13)0.1009 (7)0.5075 (14)0.040 (3)*
H310.0305 (13)0.0782 (8)0.0163 (14)0.039 (3)*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C10.0065 (4)0.0122 (4)0.0120 (5)0.0001 (3)0.0003 (3)0.0002 (3)
Na10.01416 (19)0.01326 (17)0.0185 (2)0.00042 (11)0.00193 (13)0.00036 (13)
Na20.0119 (2)0.01554 (19)0.0137 (2)0.00022 (12)0.00023 (13)0.00171 (14)
O10.0156 (3)0.0113 (3)0.0121 (3)0.00051 (19)0.0003 (2)0.0006 (2)
O20.0154 (3)0.0113 (3)0.0126 (3)0.00039 (19)0.0004 (2)0.0009 (3)
O30.0168 (3)0.0137 (3)0.0102 (3)0.0005 (2)0.0001 (2)0.0001 (2)
O110.0159 (3)0.0175 (3)0.0176 (3)0.0011 (2)0.0058 (2)0.0024 (3)
O120.0154 (3)0.0199 (3)0.0139 (3)0.0041 (2)0.0015 (2)0.0002 (3)
O310.0190 (5)0.0156 (4)0.0233 (5)0.0061 (4)0.0084 (4)0.0036 (4)
O410.0397 (16)0.0103 (12)0.0133 (14)0.0062 (10)0.0057 (12)0.0018 (10)
Geometric parameters (Å, º) top
C1—O31.2838 (10)Na2—Na2ix3.3296
C1—O21.2878 (10)O1—Na2ix2.3279 (6)
C1—O11.2896 (10)O2—Na1x2.3734 (6)
C1—Na2i3.1175 (8)O2—Na1xi2.3882 (6)
Na1—O2ii2.3734 (6)O3—Na2i2.3435 (6)
Na1—O122.3771 (6)O3—Na2vi2.3557 (6)
Na1—O2iii2.3882 (6)O11—O121.4785 (8)
Na1—O11iv2.4139 (6)O11—Na1vi2.4139 (6)
Na1—O412.470 (3)O11—Na2vi2.5215 (6)
Na1—O41iv2.483 (3)O11—H111.012 (12)
Na1—O312.4871 (10)O12—Na2i2.4973 (6)
Na1—O31v2.6440 (10)O12—H120.970 (12)
Na1—O31iv2.9780 (10)O31—O410.525 (3)
Na1—Na1vi3.3386 (1)O31—O41xii1.382 (2)
Na1—Na1iv3.3386 (1)O31—O31xii1.4773 (17)
Na2—O1vii2.3279 (6)O31—Na1xiii2.6440 (10)
Na2—O3viii2.3435 (6)O31—Na1vi2.9780 (10)
Na2—O3iv2.3557 (6)O31—H310.961 (12)
Na2—O12.3575 (6)O41—O31xii1.382 (2)
Na2—O12viii2.4973 (6)O41—O41xii1.480 (5)
Na2—O11iv2.5215 (6)O41—Na1vi2.483 (3)
Na2—C1viii3.1175 (8)O41—H310.954 (13)
Na2—Na2vii3.3296
O3—C1—O2120.76 (8)O3viii—Na2—C1viii21.84 (2)
O3—C1—O1119.34 (8)O3iv—Na2—C1viii158.10 (2)
O2—C1—O1119.90 (8)O1—Na2—C1viii100.36 (2)
O3—C1—Na2i42.78 (3)O12viii—Na2—C1viii86.08 (2)
O2—C1—Na2i135.31 (5)O11iv—Na2—C1viii109.41 (2)
O1—C1—Na2i91.22 (5)O1vii—Na2—Na2vii45.073 (15)
O2ii—Na1—O12159.99 (2)O3viii—Na2—Na2vii135.43 (2)
O2ii—Na1—O2iii95.90 (2)O3iv—Na2—Na2vii44.734 (14)
O12—Na1—O2iii91.14 (2)O1—Na2—Na2vii135.47 (2)
O2ii—Na1—O11iv99.36 (2)O12viii—Na2—Na2vii113.475 (18)
O12—Na1—O11iv80.37 (2)O11iv—Na2—Na2vii65.557 (15)
O2iii—Na1—O11iv156.77 (2)C1viii—Na2—Na2vii121.941 (18)
O2ii—Na1—O41106.34 (7)O1vii—Na2—Na2ix135.10 (2)
O12—Na1—O4193.39 (7)O3viii—Na2—Na2ix45.031 (14)
O2iii—Na1—O4178.75 (6)O3iv—Na2—Na2ix134.81 (2)
O11iv—Na1—O4180.20 (6)O1—Na2—Na2ix44.355 (15)
O2ii—Na1—O41iv78.77 (6)O12viii—Na2—Na2ix66.087 (15)
O12—Na1—O41iv81.43 (6)O11iv—Na2—Na2ix114.772 (18)
O2iii—Na1—O41iv119.09 (6)C1viii—Na2—Na2ix58.396 (15)
O11iv—Na1—O41iv81.24 (6)Na2vii—Na2—Na2ix179.49 (2)
O41—Na1—O41iv161.32 (11)C1—O1—Na2ix119.49 (4)
O2ii—Na1—O3195.71 (3)C1—O1—Na2116.51 (4)
O12—Na1—O31103.52 (3)Na2ix—O1—Na290.57 (2)
O2iii—Na1—O3185.46 (3)C1—O2—Na1x118.33 (5)
O11iv—Na1—O3175.71 (3)C1—O2—Na1xi117.26 (4)
O41—Na1—O3112.16 (7)Na1x—O2—Na1xi89.04 (2)
O41iv—Na1—O31155.11 (6)C1—O3—Na2i115.38 (4)
O2ii—Na1—O31v81.25 (3)C1—O3—Na2vi116.81 (4)
O12—Na1—O31v80.30 (3)Na2i—O3—Na2vi90.24 (2)
O2iii—Na1—O31v88.02 (3)O12—O11—Na1vi108.52 (4)
O11iv—Na1—O31v111.49 (3)O12—O11—Na2vi105.86 (4)
O41—Na1—O31v165.27 (7)Na1vi—O11—Na2vi129.49 (2)
O41iv—Na1—O31v31.07 (6)O12—O11—H1198.6 (6)
O31—Na1—O31v172.497 (15)Na1vi—O11—H11121.8 (7)
O2ii—Na1—O31iv75.45 (2)Na2vi—O11—H1187.4 (7)
O12—Na1—O31iv84.68 (2)O11—O12—Na1108.05 (4)
O2iii—Na1—O31iv117.44 (3)O11—O12—Na2i106.31 (4)
O11iv—Na1—O31iv83.50 (2)Na1—O12—Na2i126.26 (2)
O41—Na1—O31iv163.67 (6)O11—O12—H1298.8 (6)
O41iv—Na1—O31iv3.70 (7)Na1—O12—H12121.3 (7)
O31—Na1—O31iv155.84 (3)Na2i—O12—H1292.1 (7)
O31v—Na1—O31iv29.72 (4)O41—O31—O41xii90.1 (4)
O2ii—Na1—Na1vi130.889 (16)O41—O31—O31xii69.3 (3)
O12—Na1—Na1vi65.762 (15)O41xii—O31—O31xii20.83 (12)
O2iii—Na1—Na1vi45.300 (14)O41—O31—Na182.0 (4)
O11iv—Na1—Na1vi112.016 (15)O41xii—O31—Na1127.81 (11)
O41—Na1—Na1vi47.78 (7)O31xii—O31—Na1121.61 (9)
O41iv—Na1—Na1vi140.77 (7)O41—O31—Na1xiii151.1 (4)
O31—Na1—Na1vi59.36 (2)O41xii—O31—Na1xiii68.01 (13)
O31v—Na1—Na1vi117.73 (2)O31xii—O31—Na1xiii87.76 (8)
O31iv—Na1—Na1vi142.40 (2)Na1—O31—Na1xiii126.16 (4)
O2ii—Na1—Na1iv45.663 (14)O41—O31—Na1vi17.8 (3)
O12—Na1—Na1iv119.568 (17)O41xii—O31—Na1vi82.46 (13)
O2iii—Na1—Na1iv137.088 (14)O31xii—O31—Na1vi62.52 (7)
O11iv—Na1—Na1iv64.422 (14)Na1—O31—Na1vi74.70 (3)
O41—Na1—Na1iv123.96 (7)Na1xiii—O31—Na1vi150.28 (4)
O41iv—Na1—Na1iv47.45 (6)O41—O31—H3173.4 (7)
O31—Na1—Na1iv112.29 (3)O41xii—O31—H31101.1 (7)
O31v—Na1—Na1iv70.42 (2)O31xii—O31—H3194.5 (6)
O31iv—Na1—Na1iv45.936 (19)Na1—O31—H31125.0 (8)
Na1vi—Na1—Na1iv171.60 (2)Na1xiii—O31—H3191.8 (7)
O1vii—Na2—O3viii98.14 (2)Na1vi—O31—H3190.6 (6)
O1vii—Na2—O3iv81.92 (2)O31—O41—O31xii89.9 (4)
O3viii—Na2—O3iv179.774 (18)O31—O41—O41xii69.1 (3)
O1vii—Na2—O1179.360 (19)O31xii—O41—O41xii20.80 (11)
O3viii—Na2—O181.56 (2)O31—O41—Na185.8 (3)
O3iv—Na2—O198.38 (2)O31xii—O41—Na1128.09 (15)
O1vii—Na2—O12viii99.34 (2)O41xii—O41—Na1123.4 (2)
O3viii—Na2—O12viii93.70 (2)O31—O41—Na1vi158.5 (4)
O3iv—Na2—O12viii86.07 (2)O31xii—O41—Na1vi80.92 (13)
O1—Na2—O12viii80.13 (2)O41xii—O41—Na1vi100.5 (2)
O1vii—Na2—O11iv91.47 (2)Na1—O41—Na1vi84.77 (9)
O3viii—Na2—O11iv98.20 (2)O31—O41—H3174.8 (7)
O3iv—Na2—O11iv82.02 (2)O31xii—O41—H31101.1 (7)
O1—Na2—O11iv89.13 (2)O41xii—O41—H3195.0 (8)
O12viii—Na2—O11iv162.65 (2)Na1—O41—H31127.0 (7)
O1vii—Na2—C1viii79.23 (2)Na1vi—O41—H31125.9 (6)
O3—C1—O1—Na2ix125.24 (5)O41—Na1—O31—O31xii59.6 (3)
O2—C1—O1—Na2ix54.52 (7)O41iv—Na1—O31—O31xii167.30 (16)
Na2i—C1—O1—Na2ix159.13 (3)O31v—Na1—O31—O31xii26.1 (2)
O3—C1—O1—Na2127.61 (5)O31iv—Na1—O31—O31xii158.55 (6)
O2—C1—O1—Na252.63 (7)Na1vi—Na1—O31—O31xii43.11 (9)
Na2i—C1—O1—Na293.73 (4)Na1iv—Na1—O31—O31xii135.86 (9)
O1vii—Na2—O1—C191.8 (16)O2ii—Na1—O31—Na1xiii21.39 (4)
O3viii—Na2—O1—C1153.24 (6)O12—Na1—O31—Na1xiii153.03 (4)
O3iv—Na2—O1—C126.54 (6)O2iii—Na1—O31—Na1xiii116.88 (4)
O12viii—Na2—O1—C157.96 (5)O11iv—Na1—O31—Na1xiii76.85 (4)
O11iv—Na2—O1—C1108.34 (5)O41—Na1—O31—Na1xiii172.8 (3)
C1viii—Na2—O1—C1142.08 (5)O41iv—Na1—O31—Na1xiii54.16 (16)
Na2vii—Na2—O1—C155.60 (6)O31v—Na1—O31—Na1xiii87.06 (18)
Na2ix—Na2—O1—C1123.71 (6)O31iv—Na1—O31—Na1xiii45.41 (12)
O1vii—Na2—O1—Na2ix31.9 (16)Na1vi—Na1—O31—Na1xiii156.25 (5)
O3viii—Na2—O1—Na2ix29.523 (18)Na1iv—Na1—O31—Na1xiii22.71 (5)
O3iv—Na2—O1—Na2ix150.26 (2)O2ii—Na1—O31—Na1vi134.859 (17)
O12viii—Na2—O1—Na2ix65.758 (19)O12—Na1—O31—Na1vi50.72 (2)
O11iv—Na2—O1—Na2ix127.94 (2)O2iii—Na1—O31—Na1vi39.37 (2)
C1viii—Na2—O1—Na2ix18.36 (2)O11iv—Na1—O31—Na1vi126.90 (2)
Na2vii—Na2—O1—Na2ix179.32 (3)O41—Na1—O31—Na1vi16.5 (3)
O3—C1—O2—Na1x47.95 (7)O41iv—Na1—O31—Na1vi149.59 (15)
O1—C1—O2—Na1x132.28 (5)O31v—Na1—O31—Na1vi69.19 (18)
Na2i—C1—O2—Na1x4.25 (9)O31iv—Na1—O31—Na1vi158.34 (8)
O3—C1—O2—Na1xi56.89 (7)Na1iv—Na1—O31—Na1vi178.963 (5)
O1—C1—O2—Na1xi122.87 (5)O41xii—O31—O41—O31xii0
Na2i—C1—O2—Na1xi109.10 (5)Na1—O31—O41—O31xii128.22 (13)
O2—C1—O3—Na2i125.09 (5)Na1xiii—O31—O41—O31xii39.7 (7)
O1—C1—O3—Na2i55.15 (6)Na1vi—O31—O41—O31xii64.1 (10)
O2—C1—O3—Na2vi130.74 (5)O31xii—O31—O41—O41xii0
O1—C1—O3—Na2vi49.03 (7)Na1—O31—O41—O41xii128.22 (13)
Na2i—C1—O3—Na2vi104.17 (5)Na1xiii—O31—O41—O41xii39.7 (7)
Na1vi—O11—O12—Na138.55 (4)Na1vi—O31—O41—O41xii64.1 (10)
Na2vi—O11—O12—Na1179.04 (2)O41xii—O31—O41—Na1128.22 (13)
Na1vi—O11—O12—Na2i176.57 (2)O31xii—O31—O41—Na1128.22 (13)
Na2vi—O11—O12—Na2i41.02 (4)Na1xiii—O31—O41—Na1167.9 (6)
O2ii—Na1—O12—O11177.43 (6)Na1vi—O31—O41—Na164.1 (10)
O2iii—Na1—O12—O1166.63 (4)O41xii—O31—O41—Na1vi64.1 (10)
O11iv—Na1—O12—O1191.62 (3)O31xii—O31—O41—Na1vi64.1 (10)
O41—Na1—O12—O1112.17 (7)Na1—O31—O41—Na1vi64.1 (10)
O41iv—Na1—O12—O11174.11 (7)Na1xiii—O31—O41—Na1vi103.8 (11)
O31—Na1—O12—O1118.98 (5)O2ii—Na1—O41—O3129.8 (3)
O31v—Na1—O12—O11154.43 (4)O12—Na1—O41—O31146.8 (3)
O31iv—Na1—O12—O11175.91 (4)O2iii—Na1—O41—O31122.7 (3)
Na1vi—Na1—O12—O1127.94 (3)O11iv—Na1—O41—O3167.2 (3)
Na1iv—Na1—O12—O11144.77 (3)O41iv—Na1—O41—O3173.7 (5)
O2ii—Na1—O12—Na2i55.32 (8)O31v—Na1—O41—O31149.19 (18)
O2iii—Na1—O12—Na2i166.12 (3)O31iv—Na1—O41—O3164.2 (4)
O11iv—Na1—O12—Na2i35.63 (3)Na1vi—Na1—O41—O31160.7 (4)
O41—Na1—O12—Na2i115.08 (7)Na1iv—Na1—O41—O3117.3 (4)
O41iv—Na1—O12—Na2i46.86 (7)O2ii—Na1—O41—O31xii56.8 (2)
O31—Na1—O12—Na2i108.27 (4)O12—Na1—O41—O31xii126.6 (2)
O31v—Na1—O12—Na2i78.32 (3)O2iii—Na1—O41—O31xii36.1 (2)
O31iv—Na1—O12—Na2i48.66 (3)O11iv—Na1—O41—O31xii153.8 (2)
Na1vi—Na1—O12—Na2i155.19 (3)O41iv—Na1—O41—O31xii160.3 (2)
Na1iv—Na1—O12—Na2i17.52 (4)O31—Na1—O41—O31xii86.5 (4)
O2ii—Na1—O31—O41151.4 (3)O31v—Na1—O41—O31xii62.6 (4)
O12—Na1—O31—O4134.2 (3)O31iv—Na1—O41—O31xii150.76 (12)
O2iii—Na1—O31—O4155.9 (3)Na1vi—Na1—O41—O31xii74.1 (2)
O11iv—Na1—O31—O41110.4 (3)Na1iv—Na1—O41—O31xii103.9 (2)
O41iv—Na1—O31—O41133.1 (4)O2ii—Na1—O41—O41xii31.7 (3)
O31v—Na1—O31—O4185.7 (4)O12—Na1—O41—O41xii151.7 (3)
O31iv—Na1—O31—O41141.8 (3)O2iii—Na1—O41—O41xii61.2 (3)
Na1vi—Na1—O31—O4116.5 (3)O11iv—Na1—O41—O41xii128.7 (3)
Na1iv—Na1—O31—O41164.5 (3)O41iv—Na1—O41—O41xii135.2 (3)
O2ii—Na1—O31—O41xii67.47 (17)O31—Na1—O41—O41xii61.5 (3)
O12—Na1—O31—O41xii118.11 (17)O31v—Na1—O41—O41xii87.7 (4)
O2iii—Na1—O31—O41xii28.02 (17)O31iv—Na1—O41—O41xii125.7 (2)
O11iv—Na1—O31—O41xii165.71 (18)Na1vi—Na1—O41—O41xii99.2 (3)
O41—Na1—O31—O41xii83.9 (4)Na1iv—Na1—O41—O41xii78.8 (3)
O41iv—Na1—O31—O41xii143.02 (16)O2ii—Na1—O41—Na1vi130.93 (5)
O31v—Na1—O31—O41xii1.8 (3)O12—Na1—O41—Na1vi52.48 (6)
O31iv—Na1—O31—O41xii134.27 (17)O2iii—Na1—O41—Na1vi38.01 (5)
Na1vi—Na1—O31—O41xii67.39 (17)O11iv—Na1—O41—Na1vi132.10 (6)
Na1iv—Na1—O31—O41xii111.57 (17)O41iv—Na1—O41—Na1vi125.6 (3)
O2ii—Na1—O31—O31xii91.75 (10)O31—Na1—O41—Na1vi160.7 (4)
O12—Na1—O31—O31xii93.82 (10)O31v—Na1—O41—Na1vi11.5 (3)
O2iii—Na1—O31—O31xii3.74 (10)O31iv—Na1—O41—Na1vi135.1 (2)
O11iv—Na1—O31—O31xii170.01 (10)Na1iv—Na1—O41—Na1vi178.035 (15)
Symmetry codes: (i) x, y+1/2, z+1/2; (ii) x+1/2, y1/2, z; (iii) x, y1/2, z+1/2; (iv) x+1/2, y, z+1/2; (v) x+1/2, y, z+1/2; (vi) x1/2, y, z+1/2; (vii) x+1/2, y+1/2, z; (viii) x, y+1/2, z1/2; (ix) x1/2, y+1/2, z; (x) x+1/2, y+1/2, z; (xi) x, y+1/2, z+1/2; (xii) x, y, z; (xiii) x+1/2, y, z1/2.
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O11.012 (12)1.601 (12)2.6020 (8)169.2 (10)
O12—H12···O2i0.970 (12)1.644 (13)2.5957 (9)165.7 (9)
O31—H31···O3viii0.961 (12)1.622 (13)2.5579 (11)163.6 (10)
O41—H31···O3viii0.954 (13)1.622 (13)2.554 (3)164.3 (11)
Symmetry codes: (i) x, y+1/2, z+1/2; (viii) x, y+1/2, z1/2.
(liqn) top
Crystal data top
CH3Na2O6F(000) = 632
Mr = 157.01Dx = 2.185 Mg m3
Orthorhombic, PbcaMo Kα radiation, λ = 0.71073 Å
Hall symbol: -P 2ac 2abCell parameters from 2623 reflections
a = 6.6521 (3) Åθ = 1.0–27.5°
b = 15.7579 (8) ŵ = 0.37 mm1
c = 9.1062 (4) ÅT = 100 K
V = 954.54 (8) Å3Plate, colourless
Z = 80.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
1091 independent reflections
Radiation source: Enraf Nonius FR590882 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.041
ϕ and ω scans with κ offsetsθmax = 27.6°, θmin = 3.4°
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
h = 78
Tmin = 0.992, Tmax = 1.02k = 2017
4463 measured reflectionsl = 911
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.027All H-atom parameters refined
wR(F2) = 0.068 w = 1/[σ2(Fo2) + (0.0282P)2 + 0.0042P]
where P = (Fo2 + 2Fc2)/3
S = 1.04(Δ/σ)max = 0.011
1091 reflectionsΔρmax = 0.24 e Å3
105 parametersΔρmin = 0.22 e Å3
0 restraintsExtinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4
Primary atom site location: structure-invariant direct methodsExtinction coefficient: 0.0123 (11)
Crystal data top
CH3Na2O6V = 954.54 (8) Å3
Mr = 157.01Z = 8
Orthorhombic, PbcaMo Kα radiation
a = 6.6521 (3) ŵ = 0.37 mm1
b = 15.7579 (8) ÅT = 100 K
c = 9.1062 (4) Å0.08 × 0.07 × 0.04 mm
Data collection top
KappaCCD
diffractometer
1091 independent reflections
Absorption correction: multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
882 reflections with I > 2σ(I)
Tmin = 0.992, Tmax = 1.02Rint = 0.041
4463 measured reflections
Refinement top
R[F2 > 2σ(F2)] = 0.0270 restraints
wR(F2) = 0.068All H-atom parameters refined
S = 1.04Δρmax = 0.24 e Å3
1091 reflectionsΔρmin = 0.22 e Å3
105 parameters
Special details top

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.

Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
C10.00445 (9)0.33817 (6)0.25232 (9)0.0092 (2)
Na10.25366 (4)0.01087 (2)0.26432 (4)0.01323 (9)
Na20.24232 (4)0.249619 (19)0.00016 (3)0.01203 (10)
O10.01074 (7)0.26878 (4)0.17769 (7)0.01202 (15)
O20.00490 (7)0.41020 (4)0.18515 (6)0.01187 (15)
O30.00735 (7)0.33477 (4)0.39344 (6)0.01209 (15)
O110.10005 (8)0.13783 (4)0.33911 (7)0.01467 (14)
O120.09249 (8)0.11496 (4)0.41087 (6)0.01407 (14)
O310.08674 (11)0.02655 (5)0.02201 (9)0.0169 (2)0.8493 (17)
O410.0211 (8)0.0335 (3)0.0563 (5)0.0219 (14)0.1507 (17)
H110.0513 (17)0.1865 (7)0.2718 (13)0.041 (3)*
H120.0456 (14)0.1015 (7)0.5085 (15)0.039 (3)*
H310.0358 (14)0.0768 (8)0.0218 (14)0.034 (3)*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C10.0052 (4)0.0122 (5)0.0103 (4)0.0003 (3)0.0002 (3)0.0006 (3)
Na10.0128 (2)0.01178 (18)0.01509 (18)0.00014 (12)0.00158 (13)0.00017 (14)
Na20.0111 (2)0.0136 (2)0.01139 (19)0.00001 (13)0.00011 (13)0.00137 (14)
O10.0145 (3)0.0097 (3)0.0118 (3)0.0004 (2)0.0005 (2)0.0006 (2)
O20.0137 (3)0.0096 (3)0.0124 (3)0.0003 (2)0.0008 (2)0.0011 (2)
O30.0147 (3)0.0112 (3)0.0104 (3)0.0004 (2)0.0001 (2)0.0001 (2)
O110.0135 (3)0.0158 (3)0.0147 (3)0.0003 (2)0.0049 (2)0.0019 (3)
O120.0125 (3)0.0179 (3)0.0118 (3)0.0032 (2)0.0018 (2)0.0017 (2)
O310.0186 (4)0.0117 (4)0.0203 (4)0.0065 (3)0.0086 (3)0.0028 (3)
O410.038 (3)0.017 (3)0.011 (2)0.006 (2)0.000 (2)0.0019 (19)
Geometric parameters (Å, º) top
C1—O31.2863 (10)Na2—Na2vii3.3261 (2)
C1—O11.2882 (10)O1—Na2ix2.3249 (6)
C1—O21.2908 (11)O2—Na1x2.3698 (6)
C1—Na2i3.1148 (8)O2—Na1xi2.3847 (6)
Na1—O2ii2.3698 (6)O3—Na2i2.3390 (6)
Na1—O122.3709 (7)O3—Na2vi2.3478 (6)
Na1—O2iii2.3847 (6)O11—O121.4823 (8)
Na1—O11iv2.4159 (7)O11—Na1vi2.4159 (7)
Na1—O41iv2.441 (5)O11—Na2vi2.5189 (7)
Na1—O412.472 (5)O11—H111.035 (12)
Na1—O312.4825 (8)O12—Na2i2.4916 (7)
Na1—O31v2.6422 (9)O12—H120.966 (13)
Na1—O31iv2.9590 (8)O31—O410.548 (5)
Na1—Na1vi3.3363 (2)O31—O41xii1.385 (5)
Na1—Na1iv3.3363 (2)O31—O31xii1.4808 (15)
Na2—O1vii2.3249 (6)O31—Na1xiii2.6422 (9)
Na2—O3viii2.3390 (6)O31—Na1vi2.9590 (8)
Na2—O3iv2.3478 (6)O31—H310.949 (12)
Na2—O12.3534 (6)O41—O31xii1.385 (5)
Na2—O12viii2.4916 (7)O41—O41xii1.498 (10)
Na2—O11iv2.5189 (7)O41—Na1vi2.441 (5)
Na2—C1viii3.1148 (8)O41—H310.990 (13)
Na2—Na2ix3.3261 (2)
O3—C1—O1119.42 (8)O3viii—Na2—C1viii21.91 (2)
O3—C1—O2120.72 (8)O3iv—Na2—C1viii157.92 (2)
O1—C1—O2119.87 (7)O1—Na2—C1viii100.24 (2)
O3—C1—Na2i42.74 (3)O12viii—Na2—C1viii86.17 (2)
O1—C1—Na2i91.28 (5)O11iv—Na2—C1viii109.26 (2)
O2—C1—Na2i135.11 (5)O1vii—Na2—Na2ix134.94 (2)
O2ii—Na1—O12160.20 (2)O3viii—Na2—Na2ix44.899 (15)
O2ii—Na1—O2iii95.87 (3)O3iv—Na2—Na2ix135.04 (2)
O12—Na1—O2iii91.46 (2)O1—Na2—Na2ix44.343 (15)
O2ii—Na1—O11iv99.37 (2)O12viii—Na2—Na2ix66.210 (15)
O12—Na1—O11iv80.13 (2)O11iv—Na2—Na2ix114.791 (19)
O2iii—Na1—O11iv156.44 (2)C1viii—Na2—Na2ix58.262 (15)
O2ii—Na1—O41iv78.90 (12)O1vii—Na2—Na2vii45.034 (15)
O12—Na1—O41iv81.48 (12)O3viii—Na2—Na2vii135.38 (2)
O2iii—Na1—O41iv119.58 (12)O3iv—Na2—Na2vii44.686 (15)
O11iv—Na1—O41iv81.16 (12)O1—Na2—Na2vii135.68 (2)
O2ii—Na1—O41106.72 (12)O12viii—Na2—Na2vii113.368 (19)
O12—Na1—O4192.78 (12)O11iv—Na2—Na2vii65.591 (15)
O2iii—Na1—O4178.01 (12)C1viii—Na2—Na2vii121.871 (19)
O11iv—Na1—O4180.44 (12)Na2ix—Na2—Na2vii179.57 (2)
O41iv—Na1—O41161.4 (2)C1—O1—Na2ix119.76 (5)
O2ii—Na1—O3195.70 (3)C1—O1—Na2116.62 (4)
O12—Na1—O31103.25 (3)Na2ix—O1—Na290.62 (2)
O2iii—Na1—O3185.13 (2)C1—O2—Na1x118.50 (5)
O11iv—Na1—O3175.59 (2)C1—O2—Na1xi117.31 (4)
O41iv—Na1—O31154.97 (12)Na1x—O2—Na1xi89.13 (2)
O41—Na1—O3112.70 (12)C1—O3—Na2i115.35 (5)
O2ii—Na1—O31v81.28 (2)C1—O3—Na2vi116.53 (5)
O12—Na1—O31v80.57 (2)Na2i—O3—Na2vi90.42 (2)
O2iii—Na1—O31v88.28 (2)O12—O11—Na1vi108.58 (4)
O11iv—Na1—O31v111.67 (2)O12—O11—Na2vi105.87 (4)
O41iv—Na1—O31v31.30 (11)Na1vi—O11—Na2vi129.64 (2)
O41—Na1—O31v164.66 (12)O12—O11—H1199.8 (6)
O31—Na1—O31v172.447 (15)Na1vi—O11—H11120.6 (6)
O2ii—Na1—O31iv75.43 (2)Na2vi—O11—H1187.5 (7)
O12—Na1—O31iv84.88 (2)O11—O12—Na1108.11 (4)
O2iii—Na1—O31iv117.95 (2)O11—O12—Na2i106.34 (4)
O11iv—Na1—O31iv83.43 (2)Na1—O12—Na2i126.54 (2)
O41iv—Na1—O31iv3.82 (12)O11—O12—H12100.4 (6)
O41—Na1—O31iv163.86 (12)Na1—O12—H12120.8 (7)
O31—Na1—O31iv155.65 (3)Na2i—O12—H1291.0 (7)
O31v—Na1—O31iv29.98 (3)O41—O31—O41xii91.0 (6)
O2ii—Na1—Na1vi130.683 (17)O41—O31—O31xii69.3 (5)
O12—Na1—Na1vi65.996 (15)O41xii—O31—O31xii21.7 (2)
O2iii—Na1—Na1vi45.253 (15)O41—O31—Na182.5 (5)
O11iv—Na1—Na1vi111.782 (16)O41xii—O31—Na1128.4 (2)
O41iv—Na1—Na1vi141.15 (12)O31xii—O31—Na1122.20 (7)
O41—Na1—Na1vi46.84 (12)O41—O31—Na1xiii150.6 (5)
O31—Na1—Na1vi58.98 (2)O41xii—O31—Na1xiii66.3 (2)
O31v—Na1—Na1vi118.04 (2)O31xii—O31—Na1xiii86.94 (6)
O31iv—Na1—Na1vi142.93 (2)Na1—O31—Na1xiii125.98 (3)
O2ii—Na1—Na1iv45.618 (15)O41—O31—Na1vi17.3 (5)
O12—Na1—Na1iv119.658 (17)O41xii—O31—Na1vi83.9 (2)
O2iii—Na1—Na1iv137.235 (15)O31xii—O31—Na1vi63.08 (6)
O11iv—Na1—Na1iv64.402 (15)Na1—O31—Na1vi75.06 (2)
O41iv—Na1—Na1iv47.62 (12)Na1xiii—O31—Na1vi150.02 (3)
O41—Na1—Na1iv124.34 (12)O41—O31—H3177.8 (8)
O31—Na1—Na1iv112.11 (2)O41xii—O31—H3199.7 (7)
O31v—Na1—Na1iv70.662 (19)O31xii—O31—H3194.5 (6)
O31iv—Na1—Na1iv45.967 (16)Na1—O31—H31128.1 (7)
Na1vi—Na1—Na1iv171.03 (2)Na1xiii—O31—H3187.5 (7)
O1vii—Na2—O3viii98.13 (2)Na1vi—O31—H3194.5 (7)
O1vii—Na2—O3iv81.81 (2)O31—O41—O31xii89.0 (6)
O3viii—Na2—O3iv179.762 (17)O31—O41—O41xii67.6 (5)
O1vii—Na2—O1179.22 (2)O31xii—O41—O41xii21.5 (2)
O3viii—Na2—O181.40 (2)O31—O41—Na1vi158.9 (7)
O3iv—Na2—O198.66 (2)O31xii—O41—Na1vi82.4 (2)
O1vii—Na2—O12viii99.33 (2)O41xii—O41—Na1vi102.6 (4)
O3viii—Na2—O12viii93.86 (2)O31—O41—Na184.8 (6)
O3iv—Na2—O12viii85.92 (2)O31xii—O41—Na1128.3 (3)
O1—Na2—O12viii80.11 (2)O41xii—O41—Na1122.7 (5)
O1vii—Na2—O11iv91.34 (2)Na1vi—O41—Na185.54 (16)
O3viii—Na2—O11iv98.01 (2)O31—O41—H3169.5 (8)
O3iv—Na2—O11iv82.22 (2)O31xii—O41—H3198.7 (8)
O1—Na2—O11iv89.33 (2)O41xii—O41—H3190.7 (8)
O12viii—Na2—O11iv162.76 (2)Na1vi—O41—H31130.8 (7)
O1vii—Na2—C1viii79.18 (2)Na1—O41—H31126.0 (7)
O3—C1—O1—Na2ix125.24 (6)O41iv—Na1—O31—O31xii166.9 (3)
O2—C1—O1—Na2ix54.84 (7)O41—Na1—O31—O31xii59.7 (5)
Na2i—C1—O1—Na2ix159.06 (3)O31v—Na1—O31—O31xii24.9 (2)
O3—C1—O1—Na2127.27 (6)O31iv—Na1—O31—O31xii157.88 (5)
O2—C1—O1—Na252.65 (7)Na1vi—Na1—O31—O31xii43.80 (8)
Na2i—C1—O1—Na293.45 (4)Na1iv—Na1—O31—O31xii135.08 (8)
O1vii—Na2—O1—C1101.3 (12)O2ii—Na1—O31—Na1xiii21.29 (4)
O3viii—Na2—O1—C1153.62 (6)O12—Na1—O31—Na1xiii152.92 (3)
O3iv—Na2—O1—C126.15 (6)O2iii—Na1—O31—Na1xiii116.72 (4)
O12viii—Na2—O1—C158.14 (5)O11iv—Na1—O31—Na1xiii76.94 (4)
O11iv—Na2—O1—C1108.17 (5)O41iv—Na1—O31—Na1xiii54.6 (3)
C1viii—Na2—O1—C1142.37 (5)O41—Na1—O31—Na1xiii172.0 (6)
Na2ix—Na2—O1—C1124.10 (6)O31v—Na1—O31—Na1xiii87.38 (16)
Na2vii—Na2—O1—C155.29 (6)O31iv—Na1—O31—Na1xiii45.61 (11)
O1vii—Na2—O1—Na2ix22.8 (12)Na1vi—Na1—O31—Na1xiii156.07 (4)
O3viii—Na2—O1—Na2ix29.519 (19)Na1iv—Na1—O31—Na1xiii22.81 (4)
O3iv—Na2—O1—Na2ix150.25 (2)O2ii—Na1—O31—Na1vi134.781 (17)
O12viii—Na2—O1—Na2ix65.96 (2)O12—Na1—O31—Na1vi51.00 (2)
O11iv—Na2—O1—Na2ix127.73 (2)O2iii—Na1—O31—Na1vi39.36 (2)
C1viii—Na2—O1—Na2ix18.27 (2)O11iv—Na1—O31—Na1vi126.98 (2)
Na2vii—Na2—O1—Na2ix179.39 (3)O41iv—Na1—O31—Na1vi149.3 (3)
O3—C1—O2—Na1x47.59 (8)O41—Na1—O31—Na1vi15.9 (6)
O1—C1—O2—Na1x132.33 (5)O31v—Na1—O31—Na1vi68.70 (16)
Na2i—C1—O2—Na1x4.52 (9)O31iv—Na1—O31—Na1vi158.32 (7)
O3—C1—O2—Na1xi57.53 (7)Na1iv—Na1—O31—Na1vi178.880 (5)
O1—C1—O2—Na1xi122.55 (6)O41xii—O31—O41—O31xii0
Na2i—C1—O2—Na1xi109.64 (5)Na1—O31—O41—O31xii128.6 (2)
O1—C1—O3—Na2i55.08 (7)Na1xiii—O31—O41—O31xii38.1 (12)
O2—C1—O3—Na2i124.84 (6)Na1vi—O31—O41—O31xii65.7 (17)
O1—C1—O3—Na2vi49.13 (7)O31xii—O31—O41—O41xii0
O2—C1—O3—Na2vi130.95 (5)Na1—O31—O41—O41xii128.6 (2)
Na2i—C1—O3—Na2vi104.21 (6)Na1xiii—O31—O41—O41xii38.1 (12)
Na1vi—O11—O12—Na138.07 (4)Na1vi—O31—O41—O41xii65.7 (17)
Na2vi—O11—O12—Na1179.24 (2)O41xii—O31—O41—Na1vi65.7 (17)
Na1vi—O11—O12—Na2i176.54 (2)O31xii—O31—O41—Na1vi65.7 (17)
Na2vi—O11—O12—Na2i40.78 (4)Na1—O31—O41—Na1vi63.0 (17)
O2ii—Na1—O12—O11178.01 (6)Na1xiii—O31—O41—Na1vi103.7 (18)
O2iii—Na1—O12—O1166.14 (4)O41xii—O31—O41—Na1128.6 (2)
O11iv—Na1—O12—O1191.72 (3)O31xii—O31—O41—Na1128.6 (2)
O41iv—Na1—O12—O11174.16 (12)Na1xiii—O31—O41—Na1166.7 (9)
O41—Na1—O12—O1111.93 (12)Na1vi—O31—O41—Na163.0 (17)
O31—Na1—O12—O1119.20 (5)O2ii—Na1—O41—O3130.6 (6)
O31v—Na1—O12—O11154.15 (4)O12—Na1—O41—O31145.9 (5)
O31iv—Na1—O12—O11175.92 (4)O2iii—Na1—O41—O31123.2 (6)
Na1vi—Na1—O12—O1127.60 (3)O11iv—Na1—O41—O3166.4 (5)
Na1iv—Na1—O12—O11144.59 (4)O41iv—Na1—O41—O3174.6 (9)
O2ii—Na1—O12—Na2i54.35 (9)O31v—Na1—O41—O31150.4 (3)
O2iii—Na1—O12—Na2i166.23 (3)O31iv—Na1—O41—O3164.8 (8)
O11iv—Na1—O12—Na2i35.91 (3)Na1vi—Na1—O41—O31161.2 (7)
O41iv—Na1—O12—Na2i46.53 (12)Na1iv—Na1—O41—O3116.6 (6)
O41—Na1—O12—Na2i115.70 (12)O2ii—Na1—O41—O31xii54.0 (4)
O31—Na1—O12—Na2i108.43 (3)O12—Na1—O41—O31xii129.5 (4)
O31v—Na1—O12—Na2i78.21 (3)O2iii—Na1—O41—O31xii38.6 (4)
O31iv—Na1—O12—Na2i48.29 (3)O11iv—Na1—O41—O31xii151.0 (4)
Na1vi—Na1—O12—Na2i155.24 (3)O41iv—Na1—O41—O31xii159.2 (4)
Na1iv—Na1—O12—Na2i16.95 (4)O31—Na1—O41—O31xii84.6 (6)
O2ii—Na1—O31—O41150.7 (6)O31v—Na1—O41—O31xii65.8 (7)
O12—Na1—O31—O4135.1 (6)O31iv—Na1—O41—O31xii149.4 (2)
O2iii—Na1—O31—O4155.3 (6)Na1vi—Na1—O41—O31xii76.6 (4)
O11iv—Na1—O31—O41111.1 (6)Na1iv—Na1—O41—O31xii101.2 (4)
O41iv—Na1—O31—O41133.4 (8)O2ii—Na1—O41—O41xii28.5 (6)
O31v—Na1—O31—O4184.6 (6)O12—Na1—O41—O41xii155.0 (5)
O31iv—Na1—O31—O41142.4 (5)O2iii—Na1—O41—O41xii64.1 (5)
Na1vi—Na1—O31—O4115.9 (6)O11iv—Na1—O41—O41xii125.5 (6)
Na1iv—Na1—O31—O41165.2 (6)O41iv—Na1—O41—O41xii133.7 (6)
O2ii—Na1—O31—O41xii65.4 (3)O31—Na1—O41—O41xii59.1 (6)
O12—Na1—O31—O41xii120.4 (3)O31v—Na1—O41—O41xii91.3 (7)
O2iii—Na1—O31—O41xii30.0 (3)O31iv—Na1—O41—O41xii123.8 (5)
O11iv—Na1—O31—O41xii163.6 (3)Na1vi—Na1—O41—O41xii102.2 (6)
O41iv—Na1—O31—O41xii141.3 (3)Na1iv—Na1—O41—O41xii75.7 (6)
O41—Na1—O31—O41xii85.3 (7)O2ii—Na1—O41—Na1vi130.65 (9)
O31v—Na1—O31—O41xii0.7 (4)O12—Na1—O41—Na1vi52.85 (12)
O31iv—Na1—O31—O41xii132.3 (3)O2iii—Na1—O41—Na1vi38.05 (9)
Na1vi—Na1—O31—O41xii69.4 (3)O11iv—Na1—O41—Na1vi132.36 (13)
Na1iv—Na1—O31—O41xii109.5 (3)O41iv—Na1—O41—Na1vi124.1 (5)
O2ii—Na1—O31—O31xii90.99 (9)O31—Na1—O41—Na1vi161.2 (7)
O12—Na1—O31—O31xii94.80 (8)O31v—Na1—O41—Na1vi10.9 (6)
O2iii—Na1—O31—O31xii4.44 (8)O31iv—Na1—O41—Na1vi134.0 (4)
O11iv—Na1—O31—O31xii170.78 (9)Na1iv—Na1—O41—Na1vi177.86 (3)
Symmetry codes: (i) x, y+1/2, z+1/2; (ii) x+1/2, y1/2, z; (iii) x, y1/2, z+1/2; (iv) x+1/2, y, z+1/2; (v) x+1/2, y, z+1/2; (vi) x1/2, y, z+1/2; (vii) x+1/2, y+1/2, z; (viii) x, y+1/2, z1/2; (ix) x1/2, y+1/2, z; (x) x+1/2, y+1/2, z; (xi) x, y+1/2, z+1/2; (xii) x, y, z; (xiii) x+1/2, y, z1/2.
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O11.035 (12)1.577 (12)2.6022 (8)170.2 (11)
O12—H12···O2i0.966 (13)1.642 (13)2.5952 (8)168.5 (10)
O31—H31···O3viii0.949 (12)1.619 (12)2.5569 (10)169.1 (10)
O41—H31···O3viii0.990 (13)1.619 (12)2.558 (5)156.6 (11)
Symmetry codes: (i) x, y+1/2, z+1/2; (viii) x, y+1/2, z1/2.
(aber) top
Crystal data top
CH3Na2O6F(000) = 632
Mr = 157.01Dx = 2.121 Mg m3
Orthorhombic, AcamCu Kα radiation, λ = 1.5418 Å
Hall symbol: -A 2 2acCell parameters from 25 reflections
a = 9.224 (4) Åθ = 20–60°
b = 15.805 (4) ŵ = 3.41 mm1
c = 6.747 (2) ÅT = 293 K
V = 983.6 (6) Å3Needle, colourless
Z = 80.4 × 0.1 × 0.1 mm
Data collection top
Graphite monochromatorθmax = 73.3°, θmin = 7.4°
272 measured reflectionsh = 010
272 independent reflectionsk = 018
272 reflections with I > 2σ(I)l = 08
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.064H atoms treated by a mixture of independent and constrained refinement
wR(F2) = 0.159 w = 1/[σ2(Fo2) + (0.1678P)2 + 0.569P]
where P = (Fo2 + 2Fc2)/3
S = 1.08(Δ/σ)max = 0.034
272 reflectionsΔρmax = 0.53 e Å3
79 parametersΔρmin = 0.45 e Å3
18 restraintsExtinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4
Primary atom site location: structure-invariant direct methodsExtinction coefficient: 0.029 (3)
Crystal data top
CH3Na2O6V = 983.6 (6) Å3
Mr = 157.01Z = 8
Orthorhombic, AcamCu Kα radiation
a = 9.224 (4) ŵ = 3.41 mm1
b = 15.805 (4) ÅT = 293 K
c = 6.747 (2) Å0.4 × 0.1 × 0.1 mm
Data collection top
272 measured reflections272 reflections with I > 2σ(I)
272 independent reflections
Refinement top
R[F2 > 2σ(F2)] = 0.06418 restraints
wR(F2) = 0.159H atoms treated by a mixture of independent and constrained refinement
S = 1.08Δρmax = 0.53 e Å3
272 reflectionsΔρmin = 0.45 e Å3
79 parameters
Special details top

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.

Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
Na10.250.01085 (9)0.250.0265 (5)
Na200.250.250.0231 (5)
C10.2494 (4)0.1623 (2)00.0131 (10)
O10.1833 (3)0.09055 (14)00.0189 (7)
O20.3901 (3)0.16505 (15)00.0208 (9)
O30.1775 (3)0.23251 (14)00.0193 (8)
O40.5507 (7)0.0347 (3)00.034 (2)0.49
O70.5082 (11)0.0230 (4)0.0962 (12)0.025 (3)0.26
O50.9115 (5)0.1135 (2)0.0952 (6)0.0245 (16)0.5
O60.8398 (5)0.1393 (3)0.0940 (7)0.0311 (17)0.5
H60.765 (3)0.184 (2)0.074 (6)0.05*0.5
H40.493 (3)0.0839 (12)0.071 (5)0.058*
H50.891 (6)0.0523 (14)0.128 (6)0.054*0.5
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
Na10.0345 (9)0.0172 (7)0.0279 (11)00.0031 (8)0
Na20.0183 (8)0.0242 (7)0.0269 (12)0.0048 (6)0.0014 (7)0.0002 (8)
C10.0110 (16)0.0129 (16)0.016 (3)0.0023 (13)00
O10.0152 (11)0.0187 (11)0.023 (2)0.0023 (10)00
O20.0158 (13)0.0145 (12)0.032 (3)0.0008 (10)00
O30.0127 (11)0.0198 (12)0.025 (2)0.0006 (10)00
O40.021 (3)0.007 (2)0.075 (6)0.009 (2)00
O70.042 (5)0.024 (5)0.010 (7)0.022 (5)0.001 (4)0.010 (3)
O50.042 (2)0.0166 (18)0.015 (4)0.0032 (17)0.0005 (19)0.0103 (16)
O60.036 (2)0.028 (2)0.029 (5)0.0132 (19)0.006 (2)0.0110 (17)
Geometric parameters (Å, º) top
Na1—O1i2.4067 (19)O1—Na1xv2.4067 (19)
Na1—O12.4067 (19)O2—Na2xvi2.3824 (17)
Na1—O6ii2.432 (4)O2—Na2xvii2.3824 (17)
Na1—O6iii2.432 (4)O3—Na2xiii2.367 (2)
Na1—O5iv2.438 (4)O4—O7xv0.780 (9)
Na1—O5v2.438 (4)O4—O70.780 (9)
Na1—O7iii2.467 (10)O4—O7iv1.244 (9)
Na1—O7ii2.467 (10)O4—O7ii1.244 (9)
Na1—O4iii2.523 (5)O4—O4iv1.441 (11)
Na1—O4iv2.523 (5)O4—Na1ii2.523 (5)
Na1—O72.653 (10)O4—Na1iv2.523 (5)
Na1—O7vi2.653 (10)O7—O7ii0.742 (13)
Na2—O3vii2.367 (2)O7—O4iv1.244 (9)
Na2—O32.367 (2)O7—O7xv1.298 (16)
Na2—O2i2.3824 (17)O7—O7iv1.495 (16)
Na2—O2viii2.3824 (17)O7—Na1ii2.467 (10)
Na2—O6ix2.521 (5)O5—O6xv0.777 (6)
Na2—O6x2.521 (5)O5—O5xv1.285 (8)
Na2—O5xi2.532 (4)O5—O61.494 (6)
Na2—O5xii2.532 (4)O5—Na1iv2.438 (4)
Na2—Na2xiii3.3735 (10)O5—Na2xviii2.532 (4)
Na2—Na2xiv3.3735 (10)O6—O5xv0.777 (6)
C1—O11.287 (4)O6—O6xv1.268 (9)
C1—O31.293 (4)O6—Na1ii2.432 (4)
C1—O21.298 (4)O6—Na2xix2.521 (5)
O1i—Na1—O196.50 (10)O5xi—Na2—O5xii180.00 (8)
O1i—Na1—O6ii161.12 (12)O3vii—Na2—Na2xiii135.45 (5)
O1—Na1—O6ii99.52 (12)O3—Na2—Na2xiii44.55 (5)
O1i—Na1—O6iii99.52 (12)O2i—Na2—Na2xiii135.07 (4)
O1—Na1—O6iii161.12 (12)O2viii—Na2—Na2xiii44.93 (4)
O6ii—Na1—O6iii66.8 (2)O6ix—Na2—Na2xiii65.32 (10)
O1i—Na1—O5iv154.12 (12)O6x—Na2—Na2xiii114.68 (10)
O1—Na1—O5iv89.24 (11)O5xi—Na2—Na2xiii65.64 (9)
O6ii—Na1—O5iv18.36 (13)O5xii—Na2—Na2xiii114.36 (9)
O6iii—Na1—O5iv80.67 (16)O3vii—Na2—Na2xiv44.55 (5)
O1i—Na1—O5v89.24 (11)O3—Na2—Na2xiv135.45 (5)
O1—Na1—O5v154.12 (12)O2i—Na2—Na2xiv44.93 (4)
O6ii—Na1—O5v80.67 (16)O2viii—Na2—Na2xiv135.07 (4)
O6iii—Na1—O5v18.36 (13)O6ix—Na2—Na2xiv114.68 (10)
O5iv—Na1—O5v96.54 (19)O6x—Na2—Na2xiv65.32 (10)
O1i—Na1—O7iii89.32 (18)O5xi—Na2—Na2xiv114.36 (9)
O1—Na1—O7iii96.63 (19)O5xii—Na2—Na2xiv65.64 (9)
O6ii—Na1—O7iii79.0 (2)Na2xiii—Na2—Na2xiv180
O6iii—Na1—O7iii93.5 (2)O1—C1—O3120.9 (3)
O5iv—Na1—O7iii64.9 (2)O1—C1—O2120.2 (3)
O5v—Na1—O7iii108.7 (2)O3—C1—O2118.9 (3)
O1i—Na1—O7ii96.63 (19)C1—O1—Na1xv117.73 (14)
O1—Na1—O7ii89.32 (18)C1—O1—Na1117.73 (14)
O6ii—Na1—O7ii93.5 (2)Na1xv—O1—Na188.99 (9)
O6iii—Na1—O7ii79.0 (2)C1—O2—Na2xvi116.38 (13)
O5iv—Na1—O7ii108.7 (2)C1—O2—Na2xvii116.38 (13)
O5v—Na1—O7ii64.9 (2)Na2xvi—O2—Na2xvii90.14 (8)
O7iii—Na1—O7ii171.1 (3)C1—O3—Na2xiii117.06 (13)
O1i—Na1—O4iii79.46 (12)C1—O3—Na2117.06 (13)
O1—Na1—O4iii112.44 (13)Na2xiii—O3—Na290.89 (10)
O6ii—Na1—O4iii85.22 (16)O7xv—O4—O7112.5 (16)
O6iii—Na1—O4iii80.46 (16)O7xv—O4—O7iv34.2 (7)
O5iv—Na1—O4iii75.05 (14)O7—O4—O7iv92.3 (9)
O5v—Na1—O4iii93.41 (15)O7xv—O4—O7ii92.3 (9)
O7iii—Na1—O4iii17.9 (2)O7—O4—O7ii34.2 (7)
O7ii—Na1—O4iii158.15 (19)O7iv—O4—O7ii62.9 (8)
O1i—Na1—O4iv112.44 (13)O7xv—O4—O4iv59.6 (7)
O1—Na1—O4iv79.46 (12)O7—O4—O4iv59.6 (7)
O6ii—Na1—O4iv80.46 (16)O7iv—O4—O4iv32.8 (4)
O6iii—Na1—O4iv85.22 (16)O7ii—O4—O4iv32.8 (4)
O5iv—Na1—O4iv93.41 (15)O7xv—O4—Na1ii152.5 (8)
O5v—Na1—O4iv75.05 (14)O7—O4—Na1ii77.0 (8)
O7iii—Na1—O4iv158.15 (19)O7iv—O4—Na1ii123.9 (4)
O7ii—Na1—O4iv17.9 (2)O7ii—O4—Na1ii82.0 (5)
O4iii—Na1—O4iv162.8 (2)O4iv—O4—Na1ii111.1 (4)
O1i—Na1—O784.86 (18)O7xv—O4—Na1iv77.0 (8)
O1—Na1—O779.69 (18)O7—O4—Na1iv152.5 (8)
O6ii—Na1—O7107.7 (2)O7iv—O4—Na1iv82.0 (5)
O6iii—Na1—O791.83 (19)O7ii—O4—Na1iv123.9 (4)
O5iv—Na1—O7121.01 (19)O4iv—O4—Na1iv111.1 (4)
O5v—Na1—O775.71 (19)Na1ii—O4—Na1iv83.91 (19)
O7iii—Na1—O7172.69 (7)O7ii—O7—O4109.5 (10)
O7ii—Na1—O716.2 (3)O7ii—O7—O4iv36.3 (7)
O4iii—Na1—O7161.06 (19)O4—O7—O4iv87.7 (9)
O4iv—Na1—O727.67 (18)O7ii—O7—O7xv90.0000 (10)
O1i—Na1—O7vi79.69 (18)O4—O7—O7xv33.7 (8)
O1—Na1—O7vi84.86 (17)O4iv—O7—O7xv58.6 (4)
O6ii—Na1—O7vi91.83 (19)O7ii—O7—O7iv60.2 (5)
O6iii—Na1—O7vi107.7 (2)O4—O7—O7iv56.2 (7)
O5iv—Na1—O7vi75.71 (19)O4iv—O7—O7iv31.4 (4)
O5v—Na1—O7vi121.01 (19)O7xv—O7—O7iv29.8 (5)
O7iii—Na1—O7vi16.2 (3)O7ii—O7—Na1ii96.2 (14)
O7ii—Na1—O7vi172.69 (7)O4—O7—Na1ii85.1 (9)
O4iii—Na1—O7vi27.67 (18)O4iv—O7—Na1ii123.9 (5)
O4iv—Na1—O7vi161.06 (19)O7xv—O7—Na1ii114.9 (2)
O7—Na1—O7vi156.7 (3)O7iv—O7—Na1ii114.8 (8)
O3vii—Na2—O3180O7ii—O7—Na167.6 (14)
O3vii—Na2—O2i81.71 (7)O4—O7—Na1145.5 (10)
O3—Na2—O2i98.29 (7)O4iv—O7—Na170.4 (5)
O3vii—Na2—O2viii98.29 (7)O7xv—O7—Na1113.03 (18)
O3—Na2—O2viii81.71 (7)O7iv—O7—Na198.7 (8)
O2i—Na2—O2viii180Na1ii—O7—Na1129.1 (3)
O3vii—Na2—O6ix88.45 (12)O6xv—O5—O5xv89.4 (4)
O3—Na2—O6ix91.55 (12)O6xv—O5—O658.1 (5)
O2i—Na2—O6ix98.86 (12)O5xv—O5—O631.3 (2)
O2viii—Na2—O6ix81.14 (12)O6xv—O5—Na1iv80.4 (4)
O3vii—Na2—O6x91.55 (12)O5xv—O5—Na1iv115.37 (10)
O3—Na2—O6x88.45 (12)O6—O5—Na1iv106.1 (3)
O2i—Na2—O6x81.14 (12)O6xv—O5—Na2xviii80.3 (4)
O2viii—Na2—O6x98.86 (12)O5xv—O5—Na2xviii114.36 (9)
O6ix—Na2—O6x180.00 (13)O6—O5—Na2xviii105.2 (2)
O3vii—Na2—O5xi99.81 (11)Na1iv—O5—Na2xviii125.97 (17)
O3—Na2—O5xi80.19 (11)O5xv—O6—O6xv90.6 (4)
O2i—Na2—O5xi87.09 (10)O5xv—O6—O559.3 (5)
O2viii—Na2—O5xi92.92 (10)O6xv—O6—O531.3 (2)
O6ix—Na2—O5xi17.69 (12)O5xv—O6—Na1ii81.2 (4)
O6x—Na2—O5xi162.31 (13)O6xv—O6—Na1ii115.64 (11)
O3vii—Na2—O5xii80.19 (11)O5—O6—Na1ii107.0 (3)
O3—Na2—O5xii99.81 (11)O5xv—O6—Na2xix82.0 (5)
O2i—Na2—O5xii92.92 (10)O6xv—O6—Na2xix114.68 (10)
O2viii—Na2—O5xii87.08 (10)O5—O6—Na2xix106.7 (3)
O6ix—Na2—O5xii162.31 (13)Na1ii—O6—Na2xix126.75 (19)
O6x—Na2—O5xii17.69 (13)
Symmetry codes: (i) x+1/2, y, z+1/2; (ii) x+1, y, z; (iii) x1/2, y, z+1/2; (iv) x+1, y, z; (v) x1/2, y, z+1/2; (vi) x+1/2, y, z+1/2; (vii) x, y+1/2, z+1/2; (viii) x1/2, y+1/2, z; (ix) x1, y, z; (x) x+1, y+1/2, z+1/2; (xi) x1, y, z; (xii) x+1, y+1/2, z+1/2; (xiii) x, y+1/2, z1/2; (xiv) x, y+1/2, z+1/2; (xv) x, y, z; (xvi) x+1/2, y+1/2, z; (xvii) x+1/2, y, z1/2; (xviii) x+1, y+1/2, z1/2; (xix) x+1, y, z.
(carskap) top
Crystal data top
CH3Na2O6F(000) = 632
Mr = 157.01Dx = 2.144 Mg m3
Orthorhombic, CmcaCu Kα radiation, λ = 1.5418 Å
Hall symbol: -C 2ac 2Cell parameters from 20 reflections
a = 9.183 (1) Åθ = 0–0°
b = 15.745 (1) ŵ = 3.45 mm1
c = 6.730 (1) ÅT = 293 K
V = 973.07 (19) Å3Plate, colourless
Z = 80.11 × 0.08 × 0.04 mm
Data collection top
Graphite monochromatorθmax = 70.0°, θmin = 5.6°
487 measured reflectionsh = 011
486 independent reflectionsk = 016
486 reflections with I > 2σ(I)l = 08
Refinement top
Refinement on F2Hydrogen site location: inferred from neighbouring sites
Least-squares matrix: fullH atoms treated by a mixture of independent and constrained refinement
R[F2 > 2σ(F2)] = 0.032 w = 1/[σ2(Fo2) + (0.0468P)2 + 0.7182P]
where P = (Fo2 + 2Fc2)/3
wR(F2) = 0.086(Δ/σ)max = 0.003
S = 1.16Δρmax = 0.18 e Å3
486 reflectionsΔρmin = 0.19 e Å3
110 parametersExtinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4
7 restraintsExtinction coefficient: 0.0017 (4)
Primary atom site location: structure-invariant direct methodsAbsolute structure: Flack H D (1983), Acta Cryst. A39, 876-881
Secondary atom site location: difference Fourier mapAbsolute structure parameter: 0.0 (4)
Crystal data top
CH3Na2O6V = 973.07 (19) Å3
Mr = 157.01Z = 8
Orthorhombic, CmcaCu Kα radiation
a = 9.183 (1) ŵ = 3.45 mm1
b = 15.745 (1) ÅT = 293 K
c = 6.730 (1) Å0.11 × 0.08 × 0.04 mm
Data collection top
487 measured reflections486 reflections with I > 2σ(I)
486 independent reflections
Refinement top
R[F2 > 2σ(F2)] = 0.032H atoms treated by a mixture of independent and constrained refinement
wR(F2) = 0.086Δρmax = 0.18 e Å3
S = 1.16Δρmin = 0.19 e Å3
486 reflectionsAbsolute structure: Flack H D (1983), Acta Cryst. A39, 876-881
110 parametersAbsolute structure parameter: 0.0 (4)
7 restraints
Special details top

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.

Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
Na10.7503 (3)0.01083 (7)0.3223 (5)0.0288 (4)
Na20.4992 (3)0.2501 (2)0.3216 (5)0.0247 (4)
C10.7496 (3)0.33812 (16)0.0719 (9)0.0151 (6)
O10.6769 (2)0.26793 (12)0.0794 (9)0.0224 (5)
O20.6825 (2)0.40948 (12)0.0728 (9)0.0247 (5)
O30.8894 (2)0.33478 (12)0.0773 (10)0.0245 (5)
O110.9118 (10)0.1172 (6)0.0208 (13)0.0264 (17)0.5
O120.8451 (12)0.1394 (6)0.1670 (14)0.0284 (19)0.5
O210.8344 (11)0.1362 (7)0.0184 (14)0.0285 (17)0.5
O220.9087 (10)0.1086 (6)0.1710 (14)0.029 (2)0.5
O310.5199 (15)0.0261 (6)0.1648 (16)0.056 (4)0.5
O320.5449 (13)0.0321 (6)0.042 (2)0.051 (3)0.5
H111.0040.1130.0250.04*0.5
H120.7880.1880.1250.04*0.5
H210.7920.1880.0250.04*0.5
H221.010.110.1250.04*0.5
H310.4710.0750.120.04*0.5
H320.4790.0790.0450.04*0.5
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
Na10.0365 (7)0.0224 (7)0.0274 (7)0.0031 (11)0.0027 (5)0.0061 (15)
Na20.0232 (6)0.0286 (7)0.0224 (6)0.0031 (4)0.0009 (4)0.0007 (5)
C10.0138 (11)0.0145 (12)0.0170 (13)0.0007 (9)0.003 (2)0.003 (2)
O10.0197 (10)0.0175 (11)0.0302 (11)0.0012 (7)0.0028 (19)0.007 (2)
O20.0217 (10)0.0179 (10)0.0346 (12)0.0007 (7)0.008 (2)0.003 (3)
O30.0167 (9)0.0207 (11)0.0362 (12)0.0007 (7)0.0056 (19)0.0025 (19)
O110.022 (4)0.023 (4)0.034 (4)0.012 (3)0.005 (3)0.010 (3)
O120.032 (5)0.015 (4)0.038 (5)0.001 (4)0.004 (4)0.017 (4)
O210.022 (4)0.032 (5)0.032 (5)0.007 (4)0.003 (3)0.004 (4)
O220.022 (4)0.029 (5)0.036 (4)0.006 (4)0.003 (4)0.011 (3)
O310.069 (7)0.033 (6)0.067 (6)0.021 (6)0.038 (7)0.014 (4)
O320.051 (4)0.025 (4)0.076 (7)0.015 (3)0.061 (5)0.024 (4)
Geometric parameters (Å, º) top
Na1—O222.350 (9)O1—Na2viii2.389 (6)
Na1—O21i2.377 (10)O2—Na1ix2.398 (6)
Na1—O312.379 (12)O2—Na1x2.403 (6)
Na1—O2ii2.398 (6)O3—Na2xi2.346 (6)
Na1—O2iii2.403 (6)O3—Na2v2.405 (6)
Na1—O32i2.417 (8)O11—O210.772 (10)
Na1—O122.439 (9)O11—O221.298 (7)
Na1—O11i2.477 (9)O11—O121.447 (12)
Na1—O322.688 (17)O11—Na1v2.477 (9)
Na1—O31iv2.760 (16)O11—Na2v2.484 (11)
Na1—Na1v3.3650 (5)O12—O220.760 (11)
Na1—Na1i3.3650 (5)O12—O211.253 (7)
Na2—O12.324 (6)O12—Na2xi2.471 (10)
Na2—O3vi2.346 (6)O21—O221.510 (12)
Na2—O1vii2.389 (6)O21—Na1v2.377 (10)
Na2—O3i2.405 (6)O21—Na2v2.591 (10)
Na2—O12vi2.471 (10)O22—Na2xi2.582 (11)
Na2—O11i2.484 (11)O31—O320.861 (12)
Na2—O22vi2.582 (11)O31—O31iv0.90 (2)
Na2—O21i2.591 (10)O31—O32iv1.368 (8)
Na2—Na2viii3.3650 (5)O31—Na1iv2.760 (16)
Na2—Na2vii3.3650 (5)O32—O32iv1.30 (2)
C1—O21.282 (3)O32—O31iv1.368 (8)
C1—O31.286 (3)O32—Na1v2.417 (8)
C1—O11.292 (3)
O22—Na1—O21i81.6 (3)O11i—Na2—O21i17.3 (2)
O22—Na1—O31106.9 (4)O22vi—Na2—O21i161.7 (4)
O21i—Na1—O3180.0 (3)O1—Na2—Na2viii45.21 (14)
O22—Na1—O2ii88.4 (3)O3vi—Na2—Na2viii45.62 (15)
O21i—Na1—O2ii162.3 (3)O1vii—Na2—Na2viii136.83 (18)
O31—Na1—O2ii89.1 (3)O3i—Na2—Na2viii135.6 (2)
O22—Na1—O2iii154.1 (3)O12vi—Na2—Na2viii65.3 (3)
O21i—Na1—O2iii98.6 (3)O11i—Na2—Na2viii115.1 (3)
O31—Na1—O2iii98.6 (3)O22vi—Na2—Na2viii67.0 (2)
O2ii—Na1—O2iii96.66 (8)O21i—Na2—Na2viii114.3 (3)
O22—Na1—O32i72.1 (4)O1—Na2—Na2vii134.30 (19)
O21i—Na1—O32i82.1 (4)O3vi—Na2—Na2vii134.6 (2)
O31—Na1—O32i162.1 (4)O1vii—Na2—Na2vii43.66 (13)
O2ii—Na1—O32i108.7 (4)O3i—Na2—Na2vii44.20 (14)
O2iii—Na1—O32i82.2 (3)O12vi—Na2—Na2vii115.1 (3)
O22—Na1—O1218.1 (3)O11i—Na2—Na2vii64.6 (2)
O21i—Na1—O1267.70 (17)O22vi—Na2—Na2vii113.3 (3)
O31—Na1—O1292.5 (4)O21i—Na2—Na2vii65.2 (2)
O2ii—Na1—O1299.2 (3)Na2viii—Na2—Na2vii179.47 (18)
O2iii—Na1—O12160.8 (3)O2—C1—O3121.1 (2)
O32i—Na1—O1282.5 (3)O2—C1—O1120.1 (2)
O22—Na1—O11i96.54 (19)O3—C1—O1118.7 (2)
O21i—Na1—O11i18.1 (2)C1—O1—Na2119.6 (4)
O31—Na1—O11i65.6 (3)C1—O1—Na2viii115.0 (3)
O2ii—Na1—O11i154.6 (3)Na2—O1—Na2viii91.13 (7)
O2iii—Na1—O11i89.7 (3)C1—O2—Na1ix117.6 (3)
O32i—Na1—O11i96.5 (4)C1—O2—Na1x117.0 (3)
O12—Na1—O11i80.5 (3)Na1ix—O2—Na1x89.00 (7)
O22—Na1—O3292.8 (3)C1—O3—Na2xi118.2 (4)
O21i—Na1—O3289.1 (3)C1—O3—Na2v115.3 (3)
O31—Na1—O3218.3 (3)Na2xi—O3—Na2v90.17 (6)
O2ii—Na1—O3276.8 (2)O21—O11—O2290.0 (10)
O2iii—Na1—O32113.1 (2)O21—O11—O1259.9 (8)
O32i—Na1—O32163.5 (4)O22—O11—O1231.6 (5)
O12—Na1—O3281.2 (4)O21—O11—Na1v73.6 (10)
O11i—Na1—O3278.1 (3)O22—O11—Na1v109.9 (9)
O22—Na1—O31iv121.9 (4)O12—O11—Na1v106.3 (7)
O21i—Na1—O31iv93.1 (4)O21—O11—Na2v89.2 (10)
O31—Na1—O31iv18.3 (4)O22—O11—Na2v121.3 (8)
O2ii—Na1—O31iv79.8 (2)O12—O11—Na2v108.0 (5)
O2iii—Na1—O31iv84.1 (2)Na1v—O11—Na2v125.8 (4)
O32i—Na1—O31iv164.6 (5)O22—O12—O2194.0 (14)
O12—Na1—O31iv109.3 (4)O22—O12—O1163.3 (10)
O11i—Na1—O31iv76.5 (3)O21—O12—O1132.2 (6)
O32—Na1—O31iv29.04 (17)O22—O12—Na174.3 (10)
O22—Na1—Na1v64.4 (3)O21—O12—Na1111.4 (9)
O21i—Na1—Na1v116.8 (3)O11—O12—Na1108.9 (6)
O31—Na1—Na1v63.4 (4)O22—O12—Na2xi89.7 (10)
O2ii—Na1—Na1v45.57 (14)O21—O12—Na2xi119.5 (9)
O2iii—Na1—Na1v134.50 (14)O11—O12—Na2xi107.2 (7)
O32i—Na1—Na1v127.9 (4)Na1—O12—Na2xi127.5 (5)
O12—Na1—Na1v64.7 (3)O11—O21—O1287.9 (12)
O11i—Na1—Na1v115.2 (3)O11—O21—O2259.3 (8)
O32—Na1—Na1v45.38 (19)O12—O21—O2230.2 (6)
O31iv—Na1—Na1v67.3 (2)O11—O21—Na1v88.3 (11)
O22—Na1—Na1i115.7 (3)O12—O21—Na1v120.6 (9)
O21i—Na1—Na1i63.2 (3)O22—O21—Na1v106.8 (7)
O31—Na1—Na1i116.4 (3)O11—O21—Na2v73.5 (10)
O2ii—Na1—Na1i134.50 (15)O12—O21—Na2v109.9 (9)
O2iii—Na1—Na1i45.43 (14)O22—O21—Na2v106.5 (6)
O32i—Na1—Na1i52.3 (4)Na1v—O21—Na2v125.5 (5)
O12—Na1—Na1i115.4 (3)O12—O22—O1185.2 (11)
O11i—Na1—Na1i64.7 (3)O12—O22—O2155.9 (9)
O32—Na1—Na1i134.4 (2)O11—O22—O2130.7 (5)
O31iv—Na1—Na1i112.5 (2)O12—O22—Na187.6 (10)
Na1v—Na1—Na1i179.82 (19)O11—O22—Na1120.9 (9)
O1—Na2—O3vi83.0 (2)O21—O22—Na1105.9 (7)
O1—Na2—O1vii178.0 (3)O12—O22—Na2xi73.2 (10)
O3vi—Na2—O1vii98.65 (15)O11—O22—Na2xi107.1 (8)
O1—Na2—O3i97.84 (15)O21—O22—Na2xi103.2 (6)
O3vi—Na2—O3i178.7 (3)Na1—O22—Na2xi126.4 (4)
O1vii—Na2—O3i80.4 (2)O32—O31—O31iv102.1 (13)
O1—Na2—O12vi91.3 (3)O32—O31—O32iv67.2 (18)
O3vi—Na2—O12vi82.0 (3)O31iv—O31—O32iv38.0 (6)
O1vii—Na2—O12vi90.1 (3)O32—O31—Na1101.6 (18)
O3i—Na2—O12vi98.9 (3)O31iv—O31—Na1105.6 (14)
O1—Na2—O11i99.8 (2)O32iv—O31—Na1126.0 (4)
O3vi—Na2—O11i87.7 (2)O32—O31—Na1iv129.1 (17)
O1vii—Na2—O11i79.2 (3)O31iv—O31—Na1iv56.1 (14)
O3i—Na2—O11i91.2 (3)O32iv—O31—Na1iv72.5 (6)
O12vi—Na2—O11i163.9 (4)Na1—O31—Na1iv127.4 (5)
O1—Na2—O22vi81.2 (2)O31—O32—O32iv75.3 (15)
O3vi—Na2—O22vi94.5 (3)O31—O32—O31iv40.0 (13)
O1vii—Na2—O22vi99.8 (2)O32iv—O32—O31iv37.5 (6)
O3i—Na2—O22vi86.6 (3)O31—O32—Na1v141.1 (18)
O12vi—Na2—O22vi17.1 (2)O32iv—O32—Na1v112.6 (6)
O11i—Na2—O22vi177.7 (4)O31iv—O32—Na1v127.9 (4)
O1—Na2—O21i87.8 (2)O31—O32—Na160.1 (16)
O3vi—Na2—O21i98.6 (3)O32iv—O32—Na1110.3 (6)
O1vii—Na2—O21i90.9 (3)O31iv—O32—Na178.4 (6)
O3i—Na2—O21i80.5 (3)Na1v—O32—Na182.3 (4)
O12vi—Na2—O21i178.8 (5)
Symmetry codes: (i) x+3/2, y, z+1/2; (ii) x+3/2, y1/2, z; (iii) x, y1/2, z+1/2; (iv) x+1, y, z; (v) x+3/2, y, z1/2; (vi) x1/2, y+1/2, z; (vii) x+1, y+1/2, z+1/2; (viii) x+1, y+1/2, z1/2; (ix) x+3/2, y+1/2, z; (x) x, y+1/2, z1/2; (xi) x+1/2, y+1/2, z.
(carob) top
Crystal data top
CH3Na2O6F(000) = 632
Mr = 157.01Dx = 2.144 Mg m3
Orthorhombic, CmcaCu Kα radiation, λ = 1.5418 Å
Hall symbol: -C 2ac 2Cell parameters from 20 reflections
a = 6.7300 (4) Åθ = 0–0°
b = 15.7450 (11) ŵ = 3.45 mm1
c = 9.1830 (7) ÅT = 293 K
V = 973.07 (12) Å3Plate, colourless
Z = 80.08 × 0.07 × 0.04 mm
Data collection top
Graphite monochromatorθmax = 70.0°, θmin = 5.6°
487 measured reflectionsh = 08
486 independent reflectionsk = 160
486 reflections with I > 2σ(I)l = 011
Refinement top
Refinement on F2Secondary atom site location: difference Fourier map
Least-squares matrix: fullHydrogen site location: inferred from neighbouring sites
R[F2 > 2σ(F2)] = 0.038H atoms treated by a mixture of independent and constrained refinement
wR(F2) = 0.087 w = 1/[σ2(Fo2) + (0.0279P)2 + 1.3823P]
where P = (Fo2 + 2Fc2)/3
S = 1.33(Δ/σ)max = 0.028
486 reflectionsΔρmax = 0.19 e Å3
79 parametersΔρmin = 0.23 e Å3
4 restraintsExtinction correction: SHELXL, Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4
Primary atom site location: structure-invariant direct methodsExtinction coefficient: 0.00173 (18)
Crystal data top
CH3Na2O6V = 973.07 (12) Å3
Mr = 157.01Z = 8
Orthorhombic, CmcaCu Kα radiation
a = 6.7300 (4) ŵ = 3.45 mm1
b = 15.7450 (11) ÅT = 293 K
c = 9.1830 (7) Å0.08 × 0.07 × 0.04 mm
Data collection top
487 measured reflections486 reflections with I > 2σ(I)
486 independent reflections
Refinement top
R[F2 > 2σ(F2)] = 0.0384 restraints
wR(F2) = 0.087H atoms treated by a mixture of independent and constrained refinement
S = 1.33Δρmax = 0.19 e Å3
486 reflectionsΔρmin = 0.23 e Å3
79 parameters
Special details top

Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'s involving l.s. planes.

Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > σ(F2) is used only for calculating R-factors(gt) etc. and is not relevant to the choice of reflections for refinement. R-factors based on F2 are statistically about twice as large as those based on F, and R- factors based on ALL data will be even larger.

Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/UeqOcc. (<1)
C100.33796 (12)0.2497 (2)0.0140 (4)
Na10.250.01089 (5)0.250.0282 (2)
Na20.250.2500.0244 (2)
O100.26783 (9)0.17659 (16)0.0221 (4)
O200.40938 (9)0.18240 (16)0.0240 (4)
O300.33476 (9)0.38948 (16)0.0236 (4)
O110.0922 (4)0.13799 (13)0.3398 (3)0.0280 (5)0.5
O120.0957 (4)0.11333 (14)0.4099 (2)0.0280 (5)0.5
O310.0909 (7)0.0239 (2)0.0137 (5)0.0335 (13)0.274 (3)
O4100.0353 (3)0.0556 (5)0.0372 (14)0.451 (5)
H110.050.1874 (14)0.280 (3)0.04*0.5
H120.049 (5)0.104 (2)0.512 (2)0.04*0.5
H310.050.0773 (13)0.027 (3)0.04*0.5
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
C10.0146 (8)0.0142 (9)0.0132 (8)000.0000 (8)
Na10.0272 (4)0.0219 (4)0.0356 (5)00.0030 (4)0
Na20.0218 (4)0.0280 (4)0.0235 (4)0.0007 (4)0.0015 (4)0.0036 (3)
O10.0301 (8)0.0168 (7)0.0193 (7)000.0024 (6)
O20.0340 (8)0.0182 (7)0.0199 (7)000.0012 (6)
O30.0340 (8)0.0201 (7)0.0169 (7)000.0002 (6)
O110.0328 (11)0.0258 (11)0.0253 (10)0.0077 (10)0.0054 (10)0.0046 (9)
O120.0323 (11)0.0320 (12)0.0198 (10)0.0096 (11)0.0002 (10)0.0029 (9)
O310.044 (2)0.023 (3)0.033 (2)0.0048 (17)0.019 (2)0.000 (2)
O410.073 (4)0.019 (2)0.020 (2)000.0004 (16)
Geometric parameters (Å, º) top
C1—O31.284 (2)O2—Na1xiv2.4022 (12)
C1—O21.283 (2)O3—Na2iii2.3752 (10)
C1—O11.292 (2)O3—Na2xv2.3752 (10)
Na1—O2i2.4022 (12)O11—O12iv0.751 (3)
Na1—O2ii2.4022 (12)O11—O11iv1.241 (5)
Na1—O11iii2.411 (2)O11—O121.471 (3)
Na1—O112.411 (2)O11—Na2iii2.530 (2)
Na1—O12iv2.416 (2)O11—H110.99 (2)
Na1—O12v2.416 (2)O12—O11iv0.751 (3)
Na1—O31iii2.428 (5)O12—O12iv1.288 (5)
Na1—O312.428 (5)O12—Na1xvi2.416 (2)
Na1—O41v2.483 (3)O12—Na2xv2.529 (2)
Na1—O412.483 (3)O12—H121.00 (2)
Na1—O31vi2.704 (5)O31—O410.744 (5)
Na1—O31vii2.704 (5)O31—O31vi0.795 (7)
Na2—O12.3536 (10)O31—O31iv1.224 (9)
Na2—O1viii2.3536 (10)O31—O41xvii1.284 (5)
Na2—O3v2.3752 (10)O31—O31xvii1.459 (9)
Na2—O3ix2.3752 (10)O31—Na1xviii2.704 (5)
Na2—O12ix2.529 (2)O31—H310.960 (19)
Na2—O12v2.529 (2)O41—O31iv0.744 (5)
Na2—O11x2.530 (2)O41—O31xvii1.284 (5)
Na2—O11iii2.530 (2)O41—O31vi1.284 (5)
Na2—Na2xi3.3650 (2)O41—O41xvii1.508 (8)
Na2—Na2xii3.3650 (2)O41—Na1xvi2.483 (3)
O1—Na2xi2.3536 (10)O41—H311.06 (2)
O2—Na1xiii2.4022 (12)
O3—C1—O2121.04 (18)O1—Na2—Na2xii135.63 (3)
O3—C1—O1119.06 (17)O1viii—Na2—Na2xii44.37 (3)
O2—C1—O1119.90 (18)O3v—Na2—Na2xii44.90 (3)
O2i—Na1—O2ii96.58 (6)O3ix—Na2—Na2xii135.10 (3)
O2i—Na1—O11iii161.65 (7)O12ix—Na2—Na2xii114.25 (5)
O2ii—Na1—O11iii98.93 (6)O12v—Na2—Na2xii65.75 (5)
O2i—Na1—O1198.93 (6)O11x—Na2—Na2xii114.82 (5)
O2ii—Na1—O11161.65 (7)O11iii—Na2—Na2xii65.18 (5)
O11iii—Na1—O1167.81 (11)Na2xi—Na2—Na2xii180
O2i—Na1—O12iv89.20 (7)C1—O1—Na2xi117.38 (8)
O2ii—Na1—O12iv154.48 (6)C1—O1—Na2117.38 (8)
O11iii—Na1—O12iv80.98 (9)Na2xi—O1—Na291.26 (5)
O11—Na1—O12iv17.91 (7)C1—O2—Na1xiii117.30 (8)
O2i—Na1—O12v154.48 (6)C1—O2—Na1xiv117.30 (8)
O2ii—Na1—O12v89.20 (7)Na1xiii—O2—Na1xiv88.92 (6)
O11iii—Na1—O12v17.91 (7)C1—O3—Na2iii116.68 (8)
O11—Na1—O12v80.98 (9)C1—O3—Na2xv116.68 (8)
O12iv—Na1—O12v96.22 (11)Na2iii—O3—Na2xv90.20 (5)
O2i—Na1—O31iii97.71 (11)O12iv—O11—O11iv91.8 (3)
O2ii—Na1—O31iii88.76 (11)O12iv—O11—O1261.1 (3)
O11iii—Na1—O31iii92.37 (11)O11iv—O11—O1230.71 (12)
O11—Na1—O31iii79.53 (11)O12iv—O11—Na181.4 (2)
O12iv—Na1—O31iii65.80 (12)O11iv—O11—Na1116.14 (6)
O12v—Na1—O31iii107.28 (12)O12—O11—Na1108.02 (15)
O2i—Na1—O3188.76 (11)O12iv—O11—Na2iii81.3 (3)
O2ii—Na1—O3197.71 (11)O11iv—O11—Na2iii114.82 (5)
O11iii—Na1—O3179.53 (11)O12—O11—Na2iii106.90 (14)
O11—Na1—O3192.37 (11)Na1—O11—Na2iii126.34 (10)
O12iv—Na1—O31107.28 (12)O12iv—O11—H11152.3 (15)
O12v—Na1—O3165.80 (12)O11iv—O11—H1173.4 (4)
O31iii—Na1—O31170.31 (17)O12—O11—H11101.6 (6)
O2i—Na1—O41v113.05 (9)Na1—O11—H11126.0 (16)
O2ii—Na1—O41v79.28 (8)Na2iii—O11—H1183.9 (15)
O11iii—Na1—O41v79.60 (11)O11iv—O12—O12iv88.2 (3)
O11—Na1—O41v85.65 (10)O11iv—O12—O1157.5 (3)
O12iv—Na1—O41v75.59 (9)O12iv—O12—O1130.71 (12)
O12v—Na1—O41v92.44 (10)O11iv—O12—Na1xvi80.7 (2)
O31iii—Na1—O41v17.38 (12)O12iv—O12—Na1xvi115.46 (6)
O31—Na1—O41v158.16 (12)O11—O12—Na1xvi106.27 (14)
O2i—Na1—O4179.28 (8)O11iv—O12—Na2xv81.6 (3)
O2ii—Na1—O41113.05 (9)O12iv—O12—Na2xv114.25 (5)
O11iii—Na1—O4185.65 (10)O11—O12—Na2xv105.76 (14)
O11—Na1—O4179.60 (11)Na1xvi—O12—Na2xv126.20 (10)
O12iv—Na1—O4192.44 (10)O11iv—O12—H12150 (2)
O12v—Na1—O4175.59 (9)O12iv—O12—H1272 (2)
O31iii—Na1—O41158.16 (12)O11—O12—H12100 (2)
O31—Na1—O4117.38 (12)Na1xvi—O12—H12127.6 (19)
O41v—Na1—O41162.23 (19)Na2xv—O12—H1286.7 (18)
O2i—Na1—O31vi79.59 (10)O41—O31—O31vi113.0 (6)
O2ii—Na1—O31vi84.89 (9)O41—O31—O31iv34.7 (4)
O11iii—Na1—O31vi92.07 (10)O31vi—O31—O31iv90.0000 (10)
O11—Na1—O31vi107.48 (10)O41—O31—O41xvii92.2 (6)
O12iv—Na1—O31vi120.63 (10)O31vi—O31—O41xvii32.2 (3)
O12v—Na1—O31vi76.19 (10)O31iv—O31—O41xvii61.5 (2)
O31iii—Na1—O31vi172.75 (4)O41—O31—O31xvii61.5 (5)
O31—Na1—O31vi16.72 (16)O31vi—O31—O31xvii57.0 (3)
O41v—Na1—O31vi160.66 (11)O31iv—O31—O31xvii33.0 (3)
O41—Na1—O31vi28.24 (11)O41xvii—O31—O31xvii30.6 (2)
O2i—Na1—O31vii84.89 (9)O41—O31—Na185.5 (5)
O2ii—Na1—O31vii79.59 (10)O31vi—O31—Na1101.8 (6)
O11iii—Na1—O31vii107.48 (10)O31iv—O31—Na1116.16 (12)
O11—Na1—O31vii92.07 (10)O41xvii—O31—Na1126.3 (3)
O12iv—Na1—O31vii76.19 (10)O31xvii—O31—Na1118.7 (4)
O12v—Na1—O31vii120.63 (10)O41—O31—Na1xviii146.7 (5)
O31iii—Na1—O31vii16.72 (16)O31vi—O31—Na1xviii61.5 (6)
O31—Na1—O31vii172.75 (4)O31iv—O31—Na1xviii113.32 (10)
O41v—Na1—O31vii28.24 (11)O41xvii—O31—Na1xviii66.3 (3)
O41—Na1—O31vii160.66 (11)O31xvii—O31—Na1xviii94.2 (4)
O31vi—Na1—O31vii156.61 (16)Na1—O31—Na1xviii127.49 (19)
O1—Na2—O1viii180O41—O31—H3175.8 (11)
O1—Na2—O3v98.34 (4)O31vi—O31—H31135.0 (18)
O1viii—Na2—O3v81.66 (4)O31iv—O31—H3173.3 (4)
O1—Na2—O3ix81.66 (4)O41xvii—O31—H31107.8 (14)
O1viii—Na2—O3ix98.34 (4)O31xvii—O31—H3198.3 (8)
O3v—Na2—O3ix180Na1—O31—H31123.2 (16)
O1—Na2—O12ix80.24 (6)Na1xviii—O31—H3186.7 (15)
O1viii—Na2—O12ix99.76 (6)O31iv—O41—O31110.7 (9)
O3v—Na2—O12ix87.29 (6)O31iv—O41—O31xvii34.7 (4)
O3ix—Na2—O12ix92.71 (6)O31—O41—O31xvii87.8 (6)
O1—Na2—O12v99.76 (6)O31iv—O41—O31vi87.8 (6)
O1viii—Na2—O12v80.24 (6)O31—O41—O31vi34.7 (4)
O3v—Na2—O12v92.71 (6)O31xvii—O41—O31vi56.9 (5)
O3ix—Na2—O12v87.29 (6)O31iv—O41—O41xvii58.3 (4)
O12ix—Na2—O12v180.00 (5)O31—O41—O41xvii58.3 (4)
O1—Na2—O11x90.99 (6)O31xvii—O41—O41xvii29.6 (3)
O1viii—Na2—O11x89.01 (6)O31vi—O41—O41xvii29.6 (3)
O3v—Na2—O11x98.86 (6)O31iv—O41—Na1153.0 (6)
O3ix—Na2—O11x81.14 (6)O31—O41—Na177.1 (4)
O12ix—Na2—O11x17.09 (6)O31xvii—O41—Na1124.6 (3)
O12v—Na2—O11x162.91 (6)O31vi—O41—Na185.5 (3)
O1—Na2—O11iii89.01 (6)O41xvii—O41—Na1111.9 (3)
O1viii—Na2—O11iii90.99 (6)O31iv—O41—Na1xvi77.1 (4)
O3v—Na2—O11iii81.14 (6)O31—O41—Na1xvi153.0 (6)
O3ix—Na2—O11iii98.86 (6)O31xvii—O41—Na1xvi85.5 (3)
O12ix—Na2—O11iii162.91 (6)O31vi—O41—Na1xvi124.6 (3)
O12v—Na2—O11iii17.09 (6)O41xvii—O41—Na1xvi111.9 (3)
O11x—Na2—O11iii180.00 (7)Na1—O41—Na1xvi85.30 (13)
O1—Na2—Na2xi44.37 (3)O31iv—O41—H3192.4 (10)
O1viii—Na2—Na2xi135.63 (3)O31—O41—H3161.3 (9)
O3v—Na2—Na2xi135.10 (3)O31xvii—O41—H31104.5 (14)
O3ix—Na2—Na2xi44.90 (3)O31vi—O41—H3187.0 (12)
O12ix—Na2—Na2xi65.75 (5)O41xvii—O41—H3188.6 (15)
O12v—Na2—Na2xi114.25 (5)Na1—O41—H31113.3 (7)
O11x—Na2—Na2xi65.18 (5)Na1xvi—O41—H31145.6 (9)
O11iii—Na2—Na2xi114.82 (5)
O3—C1—O1—Na2xi126.38 (7)O31iii—Na1—O31—O41xvii165.0 (4)
O2—C1—O1—Na2xi53.62 (7)O41v—Na1—O31—O41xvii143.9 (3)
O3—C1—O1—Na2126.38 (7)O41—Na1—O31—O41xvii89.4 (7)
O2—C1—O1—Na253.62 (7)O31vi—Na1—O31—O41xvii23.2 (4)
O1viii—Na2—O1—C16E1 (10)O31vii—Na1—O31—O41xvii4.1 (10)
O3v—Na2—O1—C128.96 (12)O2i—Na1—O31—O31xvii2.4 (4)
O3ix—Na2—O1—C1151.04 (12)O2ii—Na1—O31—O31xvii98.9 (4)
O12ix—Na2—O1—C156.81 (12)O11iii—Na1—O31—O31xvii163.4 (5)
O12v—Na2—O1—C1123.19 (12)O11—Na1—O31—O31xvii96.4 (4)
O11x—Na2—O1—C170.15 (12)O12iv—Na1—O31—O31xvii86.3 (4)
O11iii—Na2—O1—C1109.85 (12)O12v—Na1—O31—O31xvii175.4 (5)
Na2xi—Na2—O1—C1121.97 (13)O31iii—Na1—O31—O31xvii129.6 (4)
Na2xii—Na2—O1—C158.03 (13)O41v—Na1—O31—O31xvii179.3 (3)
O1viii—Na2—O1—Na2xi7E1 (10)O41—Na1—O31—O31xvii54.0 (5)
O3v—Na2—O1—Na2xi150.93 (5)O31vi—Na1—O31—O31xvii58.7 (5)
O3ix—Na2—O1—Na2xi29.07 (5)O31vii—Na1—O31—O31xvii31.3 (11)
O12ix—Na2—O1—Na2xi65.16 (6)O2i—Na1—O31—Na1xviii119.20 (17)
O12v—Na2—O1—Na2xi114.84 (6)O2ii—Na1—O31—Na1xviii22.73 (18)
O11x—Na2—O1—Na2xi51.82 (6)O11iii—Na1—O31—Na1xviii74.99 (18)
O11iii—Na2—O1—Na2xi128.18 (6)O11—Na1—O31—Na1xviii141.91 (17)
Na2xii—Na2—O1—Na2xi180O12iv—Na1—O31—Na1xviii152.02 (15)
O3—C1—O2—Na1xiii52.01 (7)O12v—Na1—O31—Na1xviii62.90 (17)
O1—C1—O2—Na1xiii127.99 (7)O31iii—Na1—O31—Na1xviii108.75 (17)
O3—C1—O2—Na1xiv52.01 (7)O41v—Na1—O31—Na1xviii57.7 (4)
O1—C1—O2—Na1xiv127.99 (7)O41—Na1—O31—Na1xviii175.6 (6)
O2—C1—O3—Na2iii127.56 (7)O31vi—Na1—O31—Na1xviii63.0 (3)
O1—C1—O3—Na2iii52.44 (7)O31vii—Na1—O31—Na1xviii90.3 (8)
O2—C1—O3—Na2xv127.56 (7)O31vi—O31—O41—O31iv52.1 (14)
O1—C1—O3—Na2xv52.44 (7)O41xvii—O31—O41—O31iv26.7 (8)
O2i—Na1—O11—O12iv57.9 (3)O31xvii—O31—O41—O31iv26.7 (8)
O2ii—Na1—O11—O12iv89.6 (3)Na1—O31—O41—O31iv153.0 (7)
O11iii—Na1—O11—O12iv135.3 (3)Na1xviii—O31—O41—O31iv20.7 (15)
O12v—Na1—O11—O12iv148.0 (2)O31vi—O31—O41—O31xvii25.4 (7)
O31iii—Na1—O11—O12iv38.4 (3)O31iv—O31—O41—O31xvii26.7 (8)
O31—Na1—O11—O12iv147.0 (3)O41xvii—O31—O41—O31xvii0
O41v—Na1—O11—O12iv54.8 (3)Na1—O31—O41—O31xvii126.2 (3)
O41—Na1—O11—O12iv135.1 (3)Na1xviii—O31—O41—O31xvii47.4 (8)
O31vi—Na1—O11—O12iv139.7 (3)O31iv—O31—O41—O31vi52.1 (14)
O31vii—Na1—O11—O12iv27.3 (3)O41xvii—O31—O41—O31vi25.4 (7)
O2i—Na1—O11—O11iv29.90 (5)O31xvii—O31—O41—O31vi25.4 (7)
O2ii—Na1—O11—O11iv177.33 (19)Na1—O31—O41—O31vi100.9 (8)
O11iii—Na1—O11—O11iv136.90 (11)Na1xviii—O31—O41—O31vi72.8 (9)
O12iv—Na1—O11—O11iv87.8 (3)O31vi—O31—O41—O41xvii25.4 (7)
O12v—Na1—O11—O11iv124.25 (7)O31iv—O31—O41—O41xvii26.7 (8)
O31iii—Na1—O11—O11iv126.16 (11)O31xvii—O31—O41—O41xvii0
O31—Na1—O11—O11iv59.21 (11)Na1—O31—O41—O41xvii126.2 (3)
O41v—Na1—O11—O11iv142.58 (9)Na1xviii—O31—O41—O41xvii47.4 (8)
O41—Na1—O11—O11iv47.37 (8)O31vi—O31—O41—Na1100.9 (8)
O31vi—Na1—O11—O11iv51.92 (11)O31iv—O31—O41—Na1153.0 (7)
O31vii—Na1—O11—O11iv115.06 (9)O41xvii—O31—O41—Na1126.2 (3)
O2i—Na1—O11—O122.16 (15)O31xvii—O31—O41—Na1126.2 (3)
O2ii—Na1—O11—O12145.27 (19)Na1xviii—O31—O41—Na1173.6 (9)
O11iii—Na1—O11—O12169.0 (2)O31vi—O31—O41—Na1xvi50.3 (15)
O12iv—Na1—O11—O1255.7 (3)O31iv—O31—O41—Na1xvi102.4 (13)
O12v—Na1—O11—O12156.31 (15)O41xvii—O31—O41—Na1xvi75.7 (11)
O31iii—Na1—O11—O1294.10 (17)O31xvii—O31—O41—Na1xvi75.7 (11)
O31—Na1—O11—O1291.27 (17)Na1—O31—O41—Na1xvi50.6 (10)
O41v—Na1—O11—O12110.52 (16)Na1xviii—O31—O41—Na1xvi123.1 (9)
O41—Na1—O11—O1279.43 (16)O2i—Na1—O41—O31iv11.7 (11)
O31vi—Na1—O11—O1283.98 (17)O2ii—Na1—O41—O31iv80.9 (11)
O31vii—Na1—O11—O1283.00 (16)O11iii—Na1—O41—O31iv178.8 (11)
O2i—Na1—O11—Na2iii130.38 (10)O11—Na1—O41—O31iv113.0 (11)
O2ii—Na1—O11—Na2iii17.0 (3)O12iv—Na1—O41—O31iv100.4 (11)
O11iii—Na1—O11—Na2iii62.82 (10)O12v—Na1—O41—O31iv163.8 (11)
O12iv—Na1—O11—Na2iii72.5 (3)O31iii—Na1—O41—O31iv95.7 (12)
O12v—Na1—O11—Na2iii75.46 (11)O31—Na1—O41—O31iv110.3 (14)
O31iii—Na1—O11—Na2iii34.12 (15)O41v—Na1—O41—O31iv147.3 (11)
O31—Na1—O11—Na2iii140.50 (15)O31vi—Na1—O41—O31iv76.2 (12)
O41v—Na1—O11—Na2iii17.71 (13)O31vii—Na1—O41—O31iv47.3 (13)
O41—Na1—O11—Na2iii152.34 (13)O2i—Na1—O41—O31122.1 (5)
O31vi—Na1—O11—Na2iii147.80 (13)O2ii—Na1—O41—O3129.4 (5)
O31vii—Na1—O11—Na2iii45.23 (14)O11iii—Na1—O41—O3168.5 (5)
O12iv—O11—O12—O11iv180O11—Na1—O41—O31136.7 (5)
Na1—O11—O12—O11iv111.1 (2)O12iv—Na1—O41—O31149.2 (5)
Na2iii—O11—O12—O11iv110.3 (2)O12v—Na1—O41—O3153.4 (4)
O11iv—O11—O12—O12iv180O31iii—Na1—O41—O31154.0 (5)
Na1—O11—O12—O12iv68.9 (2)O41v—Na1—O41—O31102.3 (5)
Na2iii—O11—O12—O12iv69.7 (2)O31vi—Na1—O41—O3134.1 (5)
O12iv—O11—O12—Na1xvi112.7 (2)O31vii—Na1—O41—O31157.66 (18)
O11iv—O11—O12—Na1xvi67.3 (2)O2i—Na1—O41—O31xvii43.9 (4)
Na1—O11—O12—Na1xvi43.75 (14)O2ii—Na1—O41—O31xvii48.8 (4)
Na2iii—O11—O12—Na1xvi177.65 (8)O11iii—Na1—O41—O31xvii146.6 (4)
O12iv—O11—O12—Na2xv111.1 (2)O11—Na1—O41—O31xvii145.1 (4)
O11iv—O11—O12—Na2xv68.9 (2)O12iv—Na1—O41—O31xvii132.6 (4)
Na1—O11—O12—Na2xv179.94 (9)O12v—Na1—O41—O31xvii131.6 (4)
Na2iii—O11—O12—Na2xv41.46 (13)O31iii—Na1—O41—O31xvii127.8 (6)
O2i—Na1—O31—O4156.4 (5)O31—Na1—O41—O31xvii78.2 (6)
O2ii—Na1—O31—O41152.9 (4)O41v—Na1—O41—O31xvii179.5 (4)
O11iii—Na1—O31—O41109.4 (5)O31vi—Na1—O41—O31xvii44.0 (4)
O11—Na1—O31—O4142.5 (5)O31vii—Na1—O41—O31xvii79.5 (6)
O12iv—Na1—O31—O4132.4 (5)O2i—Na1—O41—O31vi87.9 (2)
O12v—Na1—O31—O41121.5 (5)O2ii—Na1—O41—O31vi4.7 (2)
O31iii—Na1—O31—O4175.6 (5)O11iii—Na1—O41—O31vi102.6 (2)
O41v—Na1—O31—O41126.7 (6)O11—Na1—O41—O31vi170.8 (2)
O31vi—Na1—O31—O41112.6 (6)O12iv—Na1—O41—O31vi176.6 (2)
O31vii—Na1—O31—O4185.3 (8)O12v—Na1—O41—O31vi87.6 (2)
O2i—Na1—O31—O31vi56.2 (3)O31iii—Na1—O41—O31vi171.9 (2)
O2ii—Na1—O31—O31vi40.3 (3)O31—Na1—O41—O31vi34.1 (5)
O11iii—Na1—O31—O31vi138.0 (3)O41v—Na1—O41—O31vi136.4 (2)
O11—Na1—O31—O31vi155.1 (3)O31vii—Na1—O41—O31vi123.5 (5)
O12iv—Na1—O31—O31vi145.0 (3)O2i—Na1—O41—O41xvii74.4 (3)
O12v—Na1—O31—O31vi125.9 (4)O2ii—Na1—O41—O41xvii18.3 (3)
O31iii—Na1—O31—O31vi171.7 (3)O11iii—Na1—O41—O41xvii116.2 (3)
O41v—Na1—O31—O31vi120.7 (4)O11—Na1—O41—O41xvii175.6 (3)
O41—Na1—O31—O31vi112.6 (6)O12iv—Na1—O41—O41xvii163.1 (3)
O31vii—Na1—O31—O31vi27.3 (11)O12v—Na1—O41—O41xvii101.1 (3)
O2i—Na1—O31—O31iv39.66 (6)O31iii—Na1—O41—O41xvii158.3 (3)
O2ii—Na1—O31—O31iv136.13 (5)O31—Na1—O41—O41xvii47.7 (4)
O11iii—Na1—O31—O31iv126.15 (8)O41v—Na1—O41—O41xvii150.0 (3)
O11—Na1—O31—O31iv59.23 (7)O31vi—Na1—O41—O41xvii13.6 (3)
O12iv—Na1—O31—O31iv49.12 (9)O31vii—Na1—O41—O41xvii110.0 (4)
O12v—Na1—O31—O31iv138.24 (10)O2i—Na1—O41—Na1xvi37.36 (9)
O31iii—Na1—O31—O31iv92.39 (4)O2ii—Na1—O41—Na1xvi130.01 (7)
O41v—Na1—O31—O31iv143.5 (3)O11iii—Na1—O41—Na1xvi132.12 (11)
O41—Na1—O31—O31iv16.7 (4)O11—Na1—O41—Na1xvi63.91 (10)
O31vi—Na1—O31—O31iv95.9 (3)O12iv—Na1—O41—Na1xvi51.37 (11)
O31vii—Na1—O31—O31iv68.5 (8)O12v—Na1—O41—Na1xvi147.16 (12)
O2i—Na1—O31—O41xvii33.0 (4)O31iii—Na1—O41—Na1xvi46.6 (4)
O2ii—Na1—O31—O41xvii63.5 (4)O31—Na1—O41—Na1xvi159.4 (5)
O11iii—Na1—O31—O41xvii161.2 (4)O41v—Na1—O41—Na1xvi98.28 (9)
O11—Na1—O31—O41xvii131.9 (4)O31vi—Na1—O41—Na1xvi125.3 (3)
O12iv—Na1—O31—O41xvii121.8 (4)O31vii—Na1—O41—Na1xvi1.8 (5)
O12v—Na1—O31—O41xvii149.1 (4)
Symmetry codes: (i) x, y1/2, z+1/2; (ii) x+1/2, y1/2, z; (iii) x+1/2, y, z+1/2; (iv) x, y, z; (v) x+1/2, y, z+1/2; (vi) x, y, z; (vii) x+1/2, y, z+1/2; (viii) x+1/2, y+1/2, z; (ix) x, y+1/2, z1/2; (x) x, y+1/2, z1/2; (xi) x1/2, y+1/2, z; (xii) x+1/2, y+1/2, z; (xiii) x, y+1/2, z+1/2; (xiv) x1/2, y+1/2, z; (xv) x, y+1/2, z+1/2; (xvi) x1/2, y, z+1/2; (xvii) x, y, z; (xviii) x+1/2, y, z1/2.
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.99 (2)1.62 (2)2.610 (3)175 (1)
O12—H12···O2xix1.00 (2)1.62 (2)2.609 (3)174 (3)
O31—H31···O3ix0.96 (2)1.62 (2)2.574 (4)173 (2)
O41—H31···O3ix1.06 (2)1.62 (2)2.552 (4)144 (1)
Symmetry codes: (ix) x, y+1/2, z1/2; (xix) x, y+1/2, z+1/2.

Experimental details

(room)(m23)(m33)(m50)
Crystal data
Chemical formulaCH3Na2O6CH3Na2O6CH3Na2O6CH3Na2O6
Mr157.01157.01157.01157.01
Crystal system, space groupOrthorhombic, CmcaOrthorhombic, CmcaOrthorhombic, PbcaOrthorhombic, Pbca
Temperature (K)293250240223
a, b, c (Å)6.7138 (4), 15.7407 (11), 9.1732 (7)6.7030 (3), 15.7388 (7), 9.1684 (4)6.6971 (2), 15.7410 (6), 9.1635 (3)6.6871 (2), 15.7473 (6), 9.1540 (3)
V3)969.42 (12)967.24 (7)966.01 (6)963.95 (6)
Z8888
Radiation typeMo KαMo KαMo KαMo Kα
µ (mm1)0.360.360.370.37
Crystal size (mm)0.08 × 0.07 × 0.040.08 × 0.07 × 0.040.08 × 0.07 × 0.040.08 × 0.07 × 0.04
Data collection
DiffractometerKappaCCD
diffractometer
KappaCCD
diffractometer
KappaCCD
diffractometer
KappaCCD
diffractometer
Absorption correctionMulti-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
Multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
Multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
Multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
Tmin, Tmax0.993, 1.0140.992, 1.0120.987, 1.0130.991, 1.013
No. of measured, independent and
observed [I > 2σ(I)] reflections
2341, 603, 400 3593, 599, 514 7832, 1099, 788 7217, 1097, 885
Rint0.0440.0430.0530.061
(sin θ/λ)max1)0.6490.6490.6490.649
Refinement
R[F2 > 2σ(F2)], wR(F2), S 0.028, 0.064, 1.04 0.026, 0.065, 1.08 0.028, 0.074, 1.04 0.029, 0.075, 1.05
No. of reflections60359910991097
No. of parameters8383132133
No. of restraints0058
H-atom treatmentAll H-atom parameters refinedAll H-atom parameters refinedH atoms treated by a mixture of independent and constrained refinementH atoms treated by a mixture of independent and constrained refinement
Δρmax, Δρmin (e Å3)0.22, 0.210.33, 0.270.26, 0.230.35, 0.27
Absolute structure????
Absolute structure parameter????


(k150a)(liqn)(aber)(carskap)
Crystal data
Chemical formulaCH3Na2O6CH3Na2O6CH3Na2O6CH3Na2O6
Mr157.01157.01157.01157.01
Crystal system, space groupOrthorhombic, PbcaOrthorhombic, PbcaOrthorhombic, AcamOrthorhombic, Cmca
Temperature (K)150100293293
a, b, c (Å)6.6592 (2), 15.7511 (8), 9.1254 (4)6.6521 (3), 15.7579 (8), 9.1062 (4)9.224 (4), 15.805 (4), 6.747 (2)9.183 (1), 15.745 (1), 6.730 (1)
V3)957.16 (7)954.54 (8)983.6 (6)973.07 (19)
Z8888
Radiation typeMo KαMo KαCu KαCu Kα
µ (mm1)0.370.373.413.45
Crystal size (mm)0.08 × 0.07 × 0.040.08 × 0.07 × 0.040.4 × 0.1 × 0.10.11 × 0.08 × 0.04
Data collection
DiffractometerKappaCCD
diffractometer
KappaCCD
diffractometer
??
Absorption correctionMulti-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
Multi-scan
R.H. Blessing, Acta Cryst. (1995), A51, 33-38
Tmin, Tmax0.93, 0.9750.992, 1.02
No. of measured, independent and
observed [I > 2σ(I)] reflections
5477, 1092, 875 4463, 1091, 882 272, 272, 272 487, 486, 486
Rint0.0490.041??
(sin θ/λ)max1)0.6490.6510.6210.610
Refinement
R[F2 > 2σ(F2)], wR(F2), S 0.027, 0.064, 1.03 0.027, 0.068, 1.04 0.064, 0.159, 1.08 0.032, 0.086, 1.16
No. of reflections10921091272486
No. of parameters10510579110
No. of restraints00187
H-atom treatmentAll H-atom parameters refinedAll H-atom parameters refinedH atoms treated by a mixture of independent and constrained refinementH atoms treated by a mixture of independent and constrained refinement
Δρmax, Δρmin (e Å3)0.23, 0.290.24, 0.220.53, 0.450.18, 0.19
Absolute structure???Flack H D (1983), Acta Cryst. A39, 876-881
Absolute structure parameter???0.0 (4)


(carob)
Crystal data
Chemical formulaCH3Na2O6
Mr157.01
Crystal system, space groupOrthorhombic, Cmca
Temperature (K)293
a, b, c (Å)6.7300 (4), 15.7450 (11), 9.1830 (7)
V3)973.07 (12)
Z8
Radiation typeCu Kα
µ (mm1)3.45
Crystal size (mm)0.08 × 0.07 × 0.04
Data collection
Diffractometer?
Absorption correction
Tmin, Tmax
No. of measured, independent and
observed [I > 2σ(I)] reflections
487, 486, 486
Rint?
(sin θ/λ)max1)0.610
Refinement
R[F2 > 2σ(F2)], wR(F2), S 0.038, 0.087, 1.33
No. of reflections486
No. of parameters79
No. of restraints4
H-atom treatmentH atoms treated by a mixture of independent and constrained refinement
Δρmax, Δρmin (e Å3)0.19, 0.23
Absolute structure?
Absolute structure parameter?

Computer programs: Collect (Nonius BV, 1997-2000), HKL SCALEPACK (Otwinowski & Minor 1997), HKL DENZO and SCALEPACK (Otwinowski & Minor 1997), SHELXS97 (Sheldrick, 1997), SHELXL97 (Sheldrick, 1997), ORTEP-3 for Windows (Farrugia, 1997), WinGX publication routines (Farrugia, 1999).

Hydrogen-bond geometry (Å, º) for (room) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.962 (18)1.652 (18)2.5973 (18)166.8 (18)
O12—H12···O2i1.002 (19)1.626 (19)2.6141 (18)167.5 (17)
O31—H31···O3ii1.031 (19)1.556 (19)2.571 (3)167.2 (18)
O41—H31···O3ii1.088 (19)1.556 (19)2.540 (3)147.4 (15)
Symmetry codes: (i) x, y+1/2, z+1/2; (ii) x, y+1/2, z1/2.
Hydrogen-bond geometry (Å, º) for (m23) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.954 (17)1.658 (17)2.6013 (12)169.1 (17)
O12—H12···O2i0.953 (14)1.663 (14)2.6081 (11)170.7 (14)
O31—H31···O3ii0.969 (16)1.625 (16)2.5690 (18)163.6 (14)
O41—H31···O3ii1.021 (16)1.625 (16)2.5503 (19)148.3 (15)
Symmetry codes: (i) x, y+1/2, z+1/2; (ii) x, y+1/2, z1/2.
Hydrogen-bond geometry (Å, º) for (m33) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.928 (5)1.679 (5)2.6007 (4)171.5 (5)
O12—H12···O2i0.985 (5)1.628 (5)2.6011 (4)168.8 (5)
O21—H21···O2i0.983 (5)1.646 (5)2.6207 (8)170.6 (5)
O22—H22···O10.939 (5)1.680 (5)2.6108 (9)170.6 (5)
O31—H31···O3ii0.925 (6)1.670 (6)2.5713 (6)163.8 (5)
O41—H31···O3ii0.949 (6)1.670 (6)2.5453 (6)151.7 (5)
O51—H51···O3ii1.042 (12)1.546 (12)2.5721 (14)167.1 (11)
Symmetry codes: (i) x, y+1/2, z+1/2; (ii) x, y+1/2, z1/2.
Hydrogen-bond geometry (Å, º) for (m50) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.931 (5)1.679 (5)2.6008 (3)170.4 (4)
O12—H12···O2i0.905 (4)1.703 (4)2.5994 (3)170.0 (4)
O21—H21···O2i0.905 (5)1.719 (4)2.6158 (18)170.6 (5)
O22—H22···O10.929 (5)1.693 (4)2.6157 (18)171.9 (4)
O31—H31···O3ii1.001 (3)1.588 (3)2.5700 (5)165.6 (4)
O41—H31···O3ii0.993 (3)1.588 (3)2.5467 (6)160.6 (3)
O51—H51···O3ii0.997 (4)1.942 (9)2.657 (2)126.3 (10)
Symmetry codes: (i) x, y+1/2, z+1/2; (ii) x, y+1/2, z1/2.
Hydrogen-bond geometry (Å, º) for (k150a) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O11.012 (12)1.601 (12)2.6020 (8)169.2 (10)
O12—H12···O2i0.970 (12)1.644 (13)2.5957 (9)165.7 (9)
O31—H31···O3ii0.961 (12)1.622 (13)2.5579 (11)163.6 (10)
O41—H31···O3ii0.954 (13)1.622 (13)2.554 (3)164.3 (11)
Symmetry codes: (i) x, y+1/2, z+1/2; (ii) x, y+1/2, z1/2.
Hydrogen-bond geometry (Å, º) for (liqn) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O11.035 (12)1.577 (12)2.6022 (8)170.2 (11)
O12—H12···O2i0.966 (13)1.642 (13)2.5952 (8)168.5 (10)
O31—H31···O3ii0.949 (12)1.619 (12)2.5569 (10)169.1 (10)
O41—H31···O3ii0.990 (13)1.619 (12)2.558 (5)156.6 (11)
Symmetry codes: (i) x, y+1/2, z+1/2; (ii) x, y+1/2, z1/2.
Hydrogen-bond geometry (Å, º) for (carob) top
D—H···AD—HH···AD···AD—H···A
O11—H11···O10.99 (2)1.62 (2)2.610 (3)175.0 (12)
O12—H12···O2i1.00 (2)1.62 (2)2.609 (3)174 (3)
O31—H31···O3ii0.960 (19)1.619 (19)2.574 (4)173 (2)
O41—H31···O3ii1.06 (2)1.619 (19)2.552 (4)143.8 (12)
Symmetry codes: (i) x, y+1/2, z+1/2; (ii) x, y+1/2, z1/2.
 

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