addenda and errata\(\def\hfill{\hskip 5em}\def\hfil{\hskip 3em}\def\eqno#1{\hfil {#1}}\)

Journal logoSTRUCTURAL
CHEMISTRY
ISSN: 2053-2296

μ2-Acetato-κ2O:O′-tris­­(μ2-ferrocene­carboxyl­ato-κ2O:O′)bis­­[(N,N-di­methyl­formamide-κO)copper(II)]. Corrigendum

CROSSMARK_Color_square_no_text.svg

aDepartment of Chemistry, Fuzhou University, Fuzhou, Fujian 350002, People's Republic of China
*Correspondence e-mail: cchuang@fzu.edu.cn

(Received 3 March 2010; accepted 12 March 2010; online 30 March 2010)

In the paper by Luo, Huang, Huang & Wang [Acta Cryst. (2008), C64, m121–m122 ], the structure reported as [Cu2Fe3(C5H5)3(C2H3O2)(C6H4O2)3(C3H7NO)2] is actually a cocrystal in which one of the ferrocenecarboxyl­ate ligands in about 16% of the mol­ecules has been replaced with acetate. The correct structure of [Cu2Fe3(C5H5)3(C2H3O2)(C6H4O2)3(C3H7NO)2]0.84[Cu2Fe2(C5H5)2(C2H3O2)2(C6H4O2)2(C3H7NO)2]0.16 is now re­ported.

1. Comment

This corrigendum is to correct the report of the crystal structure of μ2-acetato-κ2O:O′-tris­(μ2-ferrocenecarboxyl­ato-κ2O:O′)bis­[(N,N-dimethyl­formamide-κO)copper(II)] (Luo et al., 2008[Luo, J.-H., Huang, C.-C., Huang, X.-H. & Wang, J.-G. (2008). Acta Cryst. C64, m121-m122.]). Examination of difference electron-density maps and atomic displacement parameters suggested that the ferrocenecarboxyl­ate ligand centred around atom Fe3 was not fully occupied. Refinement of site-occupation factors of the atoms of this ligand indicated that atom Fe3 and the C atoms of the two ferrocene rings have an occupancy of about 0.84, while the acetate part of the ligand has full occupancy. This reveals that in about 16% of the mol­ecules, the ferro­cene­carboxyl­ate ligand centred around atom Fe3 has been replaced by acetate. Thus, the reported compound is a cocrystal of composition μ2-acetato-κ2O:O′-tris­(μ2-ferro­cene­carboxyl­ato-κ2O:O′)bis­[(N,N-dimethyl­formamide-κO)copper(II)]–bis(μ2-acetato-κ2O:O′)bis(μ2-ferro­cene­car­box­yl­ato-κ2O:O′)bis­[(N,N-di­methyl­formamide-κO)copper(II)] (0.84/0.16), (I)[link].

Refinement of the site-occupation factors of the other ferrocenecarboxyl­ate ligands indicated that these sites were fully occupied. The corrected refinement results are presented here.

The presence of an additional acetate ligand in some of the mol­ecules is understandable given that Cu(OAc)2·H2O was used in the synthesis and the cocrystal has apparently arisen because of inadequate purification of the product prior to crystallization.

[Scheme 1]

2. Experimental

2.1.1. Crystal data
  • [Cu2Fe3(C5H5)3(C2H3O2)(C6H4O2)3(C3H7NO)2]0.84[Cu2Fe2(C5H5)2(C2H3O2)2(C6H4O2)2(C3H7NO)2]0.16

  • Mr = 992.40

  • Triclinic, [P \overline 1]

  • a = 10.948 (2) Å

  • b = 13.548 (3) Å

  • c = 15.828 (3) Å

  • α = 108.96 (3)°

  • β = 94.57 (3)°

  • γ = 110.33 (3)°

  • V = 2032.3 (10) Å3

  • Z = 2

  • Mo Kα radiation

  • μ = 2.08 mm−1

  • T = 298 K

  • 0.30 × 0.26 × 0.26 mm

2.1.2. Data collection
  • Rigaku R-AXIS RAPID diffractometer

  • Absorption correction: multi-scan (ABSCOR; Higashi, 1995[Higashi, T. (1995). ABSCOR. Rigaku Corporation, Tokyo, Japan.]) Tmin = 0.567, Tmax = 0.607

  • 19821 measured reflections

  • 9106 independent reflections

  • 6613 reflections with I > 2σ(I)

  • Rint = 0.045

2.1.3. Refinement
  • R[F2 > 2σ(F2)] = 0.053

  • wR(F2) = 0.155

  • S = 1.06

  • 9106 reflections

  • 488 parameters

  • H-atom parameters constrained

  • Δρmax = 0.86 e Å−3

  • Δρmin = −0.76 e Å−3

H atoms bonded to C atoms were allowed for in idealized positions using the riding-model approximation, with C—H = 0.93 [cyclo­penta­dienyl (Cp)] or 0.96 Å (meth­yl) and with Uiso(H) = 1.2Ueq(C) for the Cp rings and 1.5Ueq(C) for the methyl groups. The ferrocenecarboxyl­ate ligand centred around atom Fe3 is disordered with an acetate ligand at the same site. Refinement of a common site-occupation factor for atom Fe3 and the C atoms of the two associated Cp rings, except atom C24, which also belongs to the acetate ligand, led to a value of 0.841 (3). The site-occupation factors of the methyl H atoms of the minor-component acetate ligand were refined with a complementary value of 0.159 (3). Atoms C29, C30, C31, C32 and C33 of one Cp group were refined with the same anisotropic displacement parameters using the EADP instruction in SHELXL97 (Sheldrick, 2008[Sheldrick, G. M. (2008). Acta Cryst. A64, 112-122.]). The same type of constraint was also applied to the four methyl C atoms of the dimethyl­formamide ligands (C37, C38, C40 and C41).

Data collection: RAPID-AUTO (Rigaku, 1998[Rigaku (1998). RAPID-AUTO. Rigaku Corporation, Tokyo, Japan.]); cell refinement: RAPID-AUTO (Rigaku, 1998[Rigaku (1998). RAPID-AUTO. Rigaku Corporation, Tokyo, Japan.]); data reduction: RAPID-AUTO (Rigaku, 1998[Rigaku (1998). RAPID-AUTO. Rigaku Corporation, Tokyo, Japan.]); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008[Sheldrick, G. M. (2008). Acta Cryst. A64, 112-122.]); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008[Sheldrick, G. M. (2008). Acta Cryst. A64, 112-122.]); molecular graphics: SHELXTL/PC (Sheldrick, 1993[Sheldrick, G. M. (1993). SHELXTL/PC. Siemens Analytical X-ray Instruments Inc., Madison, Wisconsin, USA.]); software used to prepare material for publication: SHELXL97 (Sheldrick, 2008[Sheldrick, G. M. (2008). Acta Cryst. A64, 112-122.]).

Supporting information


Comment top

This corrigendum is to correct the report of the crystal structure of µ2-acetato-κ2O:O'-tris(µ2-ferrocenecarboxylato-κ2O:O')bis[(N,N-dimethylformamide-κO)copper(II)] (Luo et al., 2008). Examination of difference electron density maps and atomic displacement parameters suggested that the ferrocenecarboxylate ligand centred around atom Fe3 was not fully occupied. Refinement of site occupation factors of the atoms of this ligand indicated that atom Fe3 and the C atoms of the two ferrocene rings have an occupancy of about 0.84, while the acetate part of the ligand has full occupancy. This reveals that in about 16% of the molecules, the ferrocenecarboxylate ligand centred around atom Fe3 has been replaced by acetate. Thus the reported compound is a cocrystal of composition µ2-acetato-κ2O:O'-tris(µ2-ferrocenecarboxylato-κ2O:O')bis[(N,N-dimethylformamide-κO)copper(II)] bis(µ2-acetato-κ2O:O')-bis(µ2-ferrocenecarboxylato-κ2O:O')bis[(N,Ndimethylformamide-κO)copper(II)] (0.84:0.16).

Refinement of the site-occupation factors of the other ferrocenecarboxylate ligands indicated that these sites were fully occupied. The corrected refinement results are presented here.

The presence of an additional acetate ligand in some of the molecules is understandable given that Cu(OAc)2.H2O was used in the synthesis and the cocrystal has apparently arisen because of inadequate purification of the product prior to crystallization.

Related literature top

For related literature, see: Luo et al. (2008); Sheldrick (2008).

Refinement top

H atoms bonded to C atoms were allowed for in idealized positions using the riding-model approximation, with C—H = 0.93 [cyclopentadienyl (Cp)] or 0.96 Å (methyl) and with Uiso(H) = 1.2Ueq(C) for the Cp rings or Uiso(H) = 1.5Ueq(C) for the methyl groups. The ferrocenecarboxylate ligand centred around atom Fe3 is disordered with an acetic acid ligand at the same site. Refinement of a common site-occupation factor for atom Fe3 and the C atoms of the two associated ferrocene rings, except atom C24, which also belongs to the acetate ligand, led to a value of 0.841 (3). The site-occupation factors of the methyl H atoms of the minor-component acetate ligand were refined with a complementary value of 0.159 (3). Atoms C29, C30, C31, C32 and C33 of one Cp group were refined with the same anisotropic displacement parameters using the EADP instruction in SHELXL97 (Sheldrick, 2008). The same type of constraint was also applied to the four methyl C atoms of the dimethylformamide ligands (C37, C38, C40 and C41).

Computing details top

Data collection: RAPID-AUTO (Rigaku, 1998); cell refinement: RAPID-AUTO (Rigaku, 1998); data reduction: RAPID-AUTO (Rigaku, 1998); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: SHELXTL/PC (Sheldrick, 1993); software used to prepare material for publication: SHELXL97 (Sheldrick, 2008).

µ2-Acetato-κ2O:O'-tris(µ2-ferrocenecarboxylato- κ2O:O')bis[(N,N- dimethylformamide-κO)copper(II)]– bis(µ2-Acetato-κ2O:O')-bis(µ2-ferrocenecarboxylato- κ2O:O')bis[(N,N- dimethylformamide-κO)copper(II)] (0.84/0.16) top
Crystal data top
[Cu2Fe3(C5H5)3(C2H3O2)(C6H4O2)3(C3H7NO)2]0.84 [Cu2Fe2(C5H5)2(C2H3O2)2(C6H4O2)2(C3H7NO)2]0.16Z = 2
Mr = 992.40F(000) = 1012.9
Triclinic, P1Dx = 1.622 Mg m3
Hall symbol: -P 1Mo Kα radiation, λ = 0.71073 Å
a = 10.948 (2) ÅCell parameters from 14862 reflections
b = 13.548 (3) Åθ = 3.1–27.5°
c = 15.828 (3) ŵ = 2.08 mm1
α = 108.96 (3)°T = 298 K
β = 94.57 (3)°Rhombic, green
γ = 110.33 (3)°0.30 × 0.26 × 0.26 mm
V = 2032.3 (10) Å3
Data collection top
Rigaku R-AXIS RAPID
diffractometer
9106 independent reflections
Radiation source: rotating anode6613 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.045
oscillation scansθmax = 27.5°, θmin = 3.1°
Absorption correction: multi-scan
(ABSCOR; Higashi, 1995)
h = 1413
Tmin = 0.567, Tmax = 0.607k = 1717
19821 measured reflectionsl = 2020
Refinement top
Refinement on F2Primary atom site location: structure-invariant direct methods
Least-squares matrix: fullSecondary atom site location: difference Fourier map
R[F2 > 2σ(F2)] = 0.053Hydrogen site location: inferred from neighbouring sites
wR(F2) = 0.155H atoms treated by a mixture of independent and constrained refinement
S = 1.06 w = 1/[σ2(Fo2) + (0.0721P)2 + 2.4777P]
where P = (Fo2 + 2Fc2)/3
9106 reflections(Δ/σ)max = 0.002
488 parametersΔρmax = 0.86 e Å3
0 restraintsΔρmin = 0.76 e Å3
Crystal data top
[Cu2Fe3(C5H5)3(C2H3O2)(C6H4O2)3(C3H7NO)2]0.84 [Cu2Fe2(C5H5)2(C2H3O2)2(C6H4O2)2(C3H7NO)2]0.16γ = 110.33 (3)°
Mr = 992.40V = 2032.3 (10) Å3
Triclinic, P1Z = 2
a = 10.948 (2) ÅMo Kα radiation
b = 13.548 (3) ŵ = 2.08 mm1
c = 15.828 (3) ÅT = 298 K
α = 108.96 (3)°0.30 × 0.26 × 0.26 mm
β = 94.57 (3)°
Data collection top
Rigaku R-AXIS RAPID
diffractometer
9106 independent reflections
Absorption correction: multi-scan
(ABSCOR; Higashi, 1995)
6613 reflections with I > 2σ(I)
Tmin = 0.567, Tmax = 0.607Rint = 0.045
19821 measured reflections
Refinement top
R[F2 > 2σ(F2)] = 0.0530 restraints
wR(F2) = 0.155H atoms treated by a mixture of independent and constrained refinement
S = 1.06Δρmax = 0.86 e Å3
9106 reflectionsΔρmin = 0.76 e Å3
488 parameters
Special details top

Geometry. All esds (except the esd in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell esds are taken into account individually in the estimation of esds in distances, angles and torsion angles; correlations between esds in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell esds is used for estimating esds 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 > 2sigma(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)
Cu10.61217 (5)0.29677 (5)0.14850 (4)0.02986 (14)
Cu20.87074 (5)0.35951 (5)0.16692 (3)0.02921 (14)
Fe10.76657 (7)0.22835 (6)0.46340 (5)0.03879 (18)
Fe20.73807 (8)0.15331 (6)0.19310 (5)0.03804 (18)
Fe30.74858 (9)0.73109 (7)0.36605 (6)0.0403 (3)0.841 (3)
O10.8683 (3)0.3497 (3)0.2867 (2)0.0414 (8)
O20.6557 (4)0.3313 (3)0.2818 (2)0.0431 (8)
O30.8339 (3)0.3588 (3)0.0434 (2)0.0367 (7)
O40.6113 (3)0.2709 (3)0.0187 (2)0.0389 (7)
O50.8759 (3)0.5148 (3)0.2192 (2)0.0404 (8)
O60.6552 (3)0.4596 (3)0.1752 (2)0.0368 (7)
O70.8244 (3)0.1932 (3)0.1146 (2)0.0394 (8)
O80.6111 (3)0.1451 (3)0.1261 (2)0.0414 (8)
O91.0815 (3)0.4090 (3)0.1697 (3)0.0455 (8)
O100.3985 (3)0.2433 (3)0.1349 (3)0.0476 (9)
N11.2442 (5)0.4275 (5)0.0907 (5)0.0694 (16)
N20.2139 (6)0.2184 (6)0.1952 (5)0.0739 (18)
C10.7690 (5)0.3446 (4)0.3221 (3)0.0355 (10)
C20.7866 (5)0.3564 (4)0.4189 (3)0.0411 (11)
C30.9090 (6)0.3771 (4)0.4745 (4)0.0472 (12)
H30.98920.38500.45590.057*
C40.8875 (7)0.3833 (5)0.5623 (4)0.0571 (15)
H40.95120.39730.61200.069*
C50.7545 (7)0.3648 (5)0.5615 (4)0.0580 (16)
H50.71370.36320.61070.070*
C60.6911 (7)0.3489 (5)0.4742 (4)0.0531 (14)
H60.60200.33570.45620.064*
C70.6142 (7)0.0739 (6)0.4286 (5)0.0698 (18)
H70.52530.06060.43000.084*
C80.7122 (8)0.0912 (5)0.4995 (5)0.0707 (19)
H80.69920.09190.55710.085*
C90.8316 (8)0.1073 (5)0.4718 (5)0.0714 (19)
H90.91220.11980.50630.086*
C100.8077 (7)0.1012 (5)0.3807 (5)0.0696 (19)
H100.87070.10990.34460.084*
C110.6743 (7)0.0801 (5)0.3542 (4)0.0617 (16)
H110.63220.07150.29730.074*
C120.7186 (5)0.3072 (4)0.0067 (3)0.0307 (9)
C130.7078 (5)0.2852 (4)0.1062 (3)0.0326 (9)
C140.8151 (5)0.3259 (4)0.1484 (3)0.0395 (11)
H140.90280.37450.11840.047*
C150.7641 (6)0.2789 (5)0.2437 (4)0.0498 (14)
H150.81220.29060.28790.060*
C160.6269 (6)0.2108 (5)0.2599 (3)0.0469 (13)
H160.56930.16970.31720.056*
C170.5912 (5)0.2150 (4)0.1762 (3)0.0421 (11)
H170.50650.17840.16810.051*
C180.6870 (8)0.0107 (6)0.1635 (6)0.071 (2)
H180.61470.01720.13850.085*
C190.6858 (9)0.0175 (6)0.2579 (6)0.078 (2)
H190.61300.06680.30610.094*
C200.8141 (9)0.0423 (6)0.2650 (4)0.072 (2)
H200.84190.03980.31940.087*
C210.8944 (6)0.1070 (5)0.1770 (4)0.0565 (15)
H210.98440.15440.16260.068*
C220.8146 (7)0.0872 (5)0.1148 (4)0.0536 (15)
H220.84240.11980.05140.064*
C230.7721 (5)0.5335 (4)0.2103 (3)0.0326 (9)
C240.7902 (5)0.6548 (4)0.2446 (3)0.0401 (11)0.159 (3)
H24A0.85980.69690.29900.060*0.159 (3)
H24B0.70850.66030.25830.060*0.159 (3)
H24C0.81420.68530.19850.060*0.159 (3)
C24A0.7902 (5)0.6548 (4)0.2446 (3)0.0401 (11)0.841 (3)
C250.9057 (6)0.7480 (5)0.3030 (5)0.0447 (15)0.841 (3)
H250.98560.74450.32350.054*0.841 (3)
C260.8795 (7)0.8478 (5)0.3254 (5)0.0523 (17)0.841 (3)
H260.93880.92100.36270.063*0.841 (3)
C270.7461 (7)0.8156 (5)0.2803 (5)0.0502 (16)0.841 (3)
H270.70270.86420.28260.060*0.841 (3)
C280.6914 (6)0.6976 (5)0.2318 (4)0.0420 (13)0.841 (3)
H280.60480.65450.19700.050*0.841 (3)
C290.7962 (12)0.7066 (10)0.4817 (6)0.0900 (15)0.841 (3)
H290.87590.70250.50160.108*0.841 (3)
C300.7737 (12)0.8062 (10)0.5039 (6)0.0900 (15)0.841 (3)
H300.83310.87960.54070.108*0.841 (3)
C310.6397 (11)0.7706 (10)0.4579 (6)0.0900 (15)0.841 (3)
H310.59490.81800.45930.108*0.841 (3)
C320.5873 (12)0.6547 (10)0.4110 (6)0.0900 (15)0.841 (3)
H320.50160.61020.37520.108*0.841 (3)
C330.6851 (11)0.6166 (10)0.4267 (6)0.0900 (15)0.841 (3)
H330.67630.54140.40340.108*0.841 (3)
C340.7102 (5)0.1218 (4)0.1096 (3)0.0379 (11)
C350.6933 (7)0.0001 (5)0.0840 (4)0.0571 (15)
H35A0.73530.00870.13530.086*
H35B0.73400.02100.03320.086*
H35C0.60000.04840.06730.086*
C361.1219 (6)0.3956 (6)0.0995 (5)0.0613 (16)
H361.05700.35790.04540.074*
C371.3476 (9)0.4906 (9)0.1745 (8)0.1124 (18)
H37A1.31500.46870.22300.169*
H37B1.37090.57050.19070.169*
H37C1.42500.47400.16490.169*
C381.2923 (9)0.4145 (9)0.0108 (8)0.1124 (18)
H38A1.21950.36660.04110.169*
H38B1.35580.38040.01130.169*
H38C1.33480.48760.00710.169*
C390.3430 (7)0.2543 (6)0.1983 (5)0.0658 (19)
H390.39830.29290.25640.079*
C400.1220 (9)0.1502 (9)0.1024 (8)0.1124 (18)
H40A0.16650.17010.05690.169*
H40B0.04310.16600.10170.169*
H40C0.09780.07070.08950.169*
C410.1496 (9)0.2281 (9)0.2681 (8)0.1124 (18)
H41A0.21420.27700.32430.169*
H41B0.10490.15430.26990.169*
H41C0.08550.25970.26020.169*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
Cu10.0293 (3)0.0306 (3)0.0315 (3)0.0123 (2)0.0110 (2)0.0125 (2)
Cu20.0289 (3)0.0306 (3)0.0299 (3)0.0126 (2)0.0083 (2)0.0122 (2)
Fe10.0465 (4)0.0343 (4)0.0343 (3)0.0125 (3)0.0078 (3)0.0154 (3)
Fe20.0541 (4)0.0346 (4)0.0327 (3)0.0221 (3)0.0129 (3)0.0160 (3)
Fe30.0409 (5)0.0372 (5)0.0408 (5)0.0199 (4)0.0110 (4)0.0070 (4)
O10.046 (2)0.049 (2)0.0321 (16)0.0203 (17)0.0112 (15)0.0180 (15)
O20.051 (2)0.052 (2)0.0330 (16)0.0232 (18)0.0158 (16)0.0192 (15)
O30.0376 (18)0.0415 (18)0.0301 (15)0.0127 (15)0.0067 (14)0.0156 (14)
O40.0412 (18)0.0443 (19)0.0301 (15)0.0158 (16)0.0105 (14)0.0134 (14)
O50.0444 (19)0.0318 (17)0.0453 (18)0.0175 (16)0.0141 (16)0.0113 (15)
O60.0375 (18)0.0305 (16)0.0416 (17)0.0149 (15)0.0080 (15)0.0114 (14)
O70.0414 (19)0.0297 (17)0.0489 (19)0.0151 (15)0.0158 (16)0.0145 (15)
O80.0400 (18)0.0312 (17)0.056 (2)0.0132 (15)0.0191 (17)0.0193 (16)
O90.0350 (18)0.051 (2)0.054 (2)0.0163 (17)0.0155 (17)0.0235 (18)
O100.0340 (18)0.048 (2)0.067 (2)0.0182 (17)0.0218 (18)0.0240 (19)
N10.047 (3)0.069 (4)0.113 (5)0.028 (3)0.041 (3)0.048 (4)
N20.062 (3)0.099 (5)0.119 (5)0.055 (3)0.055 (4)0.080 (4)
C10.047 (3)0.032 (2)0.031 (2)0.017 (2)0.008 (2)0.0142 (19)
C20.054 (3)0.042 (3)0.031 (2)0.019 (2)0.009 (2)0.017 (2)
C30.055 (3)0.031 (3)0.046 (3)0.004 (2)0.001 (2)0.019 (2)
C40.080 (4)0.037 (3)0.039 (3)0.011 (3)0.003 (3)0.012 (2)
C50.097 (5)0.060 (4)0.034 (3)0.044 (4)0.022 (3)0.023 (3)
C60.075 (4)0.066 (4)0.043 (3)0.046 (3)0.025 (3)0.029 (3)
C70.055 (4)0.055 (4)0.080 (5)0.003 (3)0.010 (4)0.024 (3)
C80.104 (6)0.047 (4)0.059 (4)0.019 (4)0.017 (4)0.029 (3)
C90.090 (5)0.045 (3)0.080 (5)0.035 (4)0.002 (4)0.019 (3)
C100.077 (5)0.045 (3)0.081 (5)0.024 (3)0.037 (4)0.013 (3)
C110.073 (4)0.044 (3)0.045 (3)0.009 (3)0.000 (3)0.005 (3)
C120.039 (2)0.025 (2)0.032 (2)0.016 (2)0.008 (2)0.0124 (17)
C130.043 (3)0.033 (2)0.030 (2)0.019 (2)0.010 (2)0.0165 (18)
C140.051 (3)0.034 (2)0.042 (3)0.018 (2)0.017 (2)0.022 (2)
C150.082 (4)0.050 (3)0.043 (3)0.038 (3)0.031 (3)0.032 (3)
C160.064 (4)0.047 (3)0.032 (2)0.024 (3)0.004 (2)0.017 (2)
C170.047 (3)0.042 (3)0.042 (3)0.019 (2)0.008 (2)0.020 (2)
C180.081 (5)0.050 (4)0.116 (6)0.036 (4)0.043 (5)0.058 (4)
C190.091 (6)0.042 (3)0.089 (5)0.034 (4)0.014 (5)0.009 (3)
C200.125 (7)0.072 (5)0.050 (3)0.069 (5)0.036 (4)0.025 (3)
C210.059 (4)0.056 (4)0.069 (4)0.034 (3)0.018 (3)0.028 (3)
C220.081 (4)0.057 (3)0.051 (3)0.045 (4)0.025 (3)0.034 (3)
C230.041 (3)0.033 (2)0.030 (2)0.019 (2)0.013 (2)0.0128 (18)
C240.047 (3)0.028 (2)0.046 (3)0.017 (2)0.016 (2)0.011 (2)
C24A0.047 (3)0.028 (2)0.046 (3)0.017 (2)0.016 (2)0.011 (2)
C250.036 (3)0.034 (3)0.062 (4)0.016 (3)0.016 (3)0.012 (3)
C260.047 (4)0.026 (3)0.077 (5)0.011 (3)0.019 (3)0.013 (3)
C270.062 (4)0.033 (3)0.063 (4)0.026 (3)0.015 (3)0.020 (3)
C280.046 (3)0.039 (3)0.043 (3)0.021 (3)0.006 (3)0.014 (3)
C290.117 (4)0.111 (4)0.069 (3)0.063 (3)0.055 (3)0.040 (3)
C300.117 (4)0.111 (4)0.069 (3)0.063 (3)0.055 (3)0.040 (3)
C310.117 (4)0.111 (4)0.069 (3)0.063 (3)0.055 (3)0.040 (3)
C320.117 (4)0.111 (4)0.069 (3)0.063 (3)0.055 (3)0.040 (3)
C330.117 (4)0.111 (4)0.069 (3)0.063 (3)0.055 (3)0.040 (3)
C340.053 (3)0.030 (2)0.033 (2)0.015 (2)0.015 (2)0.0140 (19)
C350.073 (4)0.034 (3)0.073 (4)0.025 (3)0.029 (3)0.024 (3)
C360.049 (3)0.063 (4)0.084 (4)0.026 (3)0.025 (3)0.036 (4)
C370.087 (3)0.123 (4)0.180 (5)0.065 (3)0.071 (4)0.087 (4)
C380.087 (3)0.123 (4)0.180 (5)0.065 (3)0.071 (4)0.087 (4)
C390.071 (4)0.080 (5)0.092 (5)0.048 (4)0.049 (4)0.062 (4)
C400.087 (3)0.123 (4)0.180 (5)0.065 (3)0.071 (4)0.087 (4)
C410.087 (3)0.123 (4)0.180 (5)0.065 (3)0.071 (4)0.087 (4)
Geometric parameters (Å, º) top
Cu1—O81.964 (3)C7—H70.9300
Cu1—O41.968 (3)C8—C91.381 (11)
Cu1—O61.977 (3)C8—H80.9300
Cu1—O21.986 (3)C9—C101.415 (10)
Cu1—O102.164 (3)C9—H90.9300
Cu1—Cu22.6185 (10)C10—C111.387 (10)
Cu2—O11.945 (3)C10—H100.9300
Cu2—O31.961 (3)C11—H110.9300
Cu2—O51.972 (3)C12—C131.490 (6)
Cu2—O71.986 (3)C13—C171.418 (7)
Cu2—O92.160 (3)C13—C141.430 (6)
Fe1—C102.013 (6)C14—C151.409 (7)
Fe1—C32.016 (5)C14—H140.9300
Fe1—C112.025 (6)C15—C161.413 (8)
Fe1—C22.027 (5)C15—H150.9300
Fe1—C82.027 (6)C16—C171.400 (7)
Fe1—C72.036 (7)C16—H160.9300
Fe1—C92.037 (6)C17—H170.9300
Fe1—C62.039 (6)C18—C221.387 (10)
Fe1—C52.046 (6)C18—C191.414 (11)
Fe1—C42.052 (6)C18—H180.9300
Fe2—C132.020 (4)C19—C201.392 (11)
Fe2—C222.030 (5)C19—H190.9300
Fe2—C142.034 (5)C20—C211.399 (9)
Fe2—C182.036 (6)C20—H200.9300
Fe2—C202.039 (6)C21—C221.397 (8)
Fe2—C212.042 (6)C21—H210.9300
Fe2—C192.044 (6)C22—H220.9300
Fe2—C162.048 (5)C23—C241.487 (6)
Fe2—C152.050 (5)C24—H24A0.9600
Fe2—C172.052 (5)C24—H24B0.9600
Fe3—C312.009 (8)C24—H24C0.9600
Fe3—C282.020 (6)C25—C261.419 (8)
Fe3—C292.023 (10)C25—H250.9300
Fe3—C322.026 (10)C26—C271.422 (10)
Fe3—C332.033 (11)C26—H260.9300
Fe3—C302.035 (9)C27—C281.403 (9)
Fe3—C252.038 (6)C27—H270.9300
Fe3—C272.044 (7)C28—H280.9300
Fe3—C262.051 (7)C29—C331.354 (15)
O1—C11.253 (6)C29—C301.393 (14)
O2—C11.273 (6)C29—H290.9300
O3—C121.256 (6)C30—C311.423 (14)
O4—C121.259 (5)C30—H300.9300
O5—C231.255 (5)C31—C321.377 (14)
O6—C231.258 (6)C31—H310.9300
O7—C341.265 (6)C32—C331.379 (14)
O8—C341.254 (6)C32—H320.9300
O9—C361.211 (7)C33—H330.9300
O10—C391.209 (7)C34—C351.507 (7)
N1—C361.290 (7)C35—H35A0.9600
N1—C381.391 (10)C35—H35B0.9600
N1—C371.457 (12)C35—H35C0.9600
N2—C391.317 (8)C36—H360.9300
N2—C411.392 (10)C37—H37A0.9600
N2—C401.502 (13)C37—H37B0.9600
C1—C21.477 (6)C37—H37C0.9600
C2—C61.415 (7)C38—H38A0.9600
C2—C31.428 (8)C38—H38B0.9600
C3—C41.408 (8)C38—H38C0.9600
C3—H30.9300C39—H390.9300
C4—C51.388 (10)C40—H40A0.9600
C4—H40.9300C40—H40B0.9600
C5—C61.409 (8)C40—H40C0.9600
C5—H50.9300C41—H41A0.9600
C6—H60.9300C41—H41B0.9600
C7—C81.388 (10)C41—H41C0.9600
C7—C111.406 (9)
O8—Cu1—O489.62 (15)C6—C5—H5125.5
O8—Cu1—O6167.71 (14)Fe1—C5—H5126.1
O4—Cu1—O689.72 (14)C5—C6—C2108.0 (5)
O8—Cu1—O288.45 (15)C5—C6—Fe170.1 (3)
O4—Cu1—O2167.38 (14)C2—C6—Fe169.2 (3)
O6—Cu1—O289.52 (15)C5—C6—H6126.0
O8—Cu1—O1095.03 (14)C2—C6—H6126.0
O4—Cu1—O1096.21 (15)Fe1—C6—H6126.3
O6—Cu1—O1097.24 (14)C8—C7—C11107.4 (6)
O2—Cu1—O1096.38 (15)C8—C7—Fe169.7 (4)
O8—Cu1—Cu284.27 (11)C11—C7—Fe169.3 (4)
O4—Cu1—Cu284.57 (10)C8—C7—H7126.3
O6—Cu1—Cu283.45 (10)C11—C7—H7126.3
O2—Cu1—Cu282.84 (11)Fe1—C7—H7126.2
O10—Cu1—Cu2178.96 (11)C9—C8—C7109.7 (6)
O1—Cu2—O3168.39 (14)C9—C8—Fe170.5 (4)
O1—Cu2—O589.35 (15)C7—C8—Fe170.4 (4)
O3—Cu2—O589.87 (15)C9—C8—H8125.2
O1—Cu2—O788.18 (15)C7—C8—H8125.2
O3—Cu2—O790.15 (15)Fe1—C8—H8125.5
O5—Cu2—O7167.76 (14)C8—C9—C10106.7 (7)
O1—Cu2—O999.79 (15)C8—C9—Fe169.7 (4)
O3—Cu2—O991.81 (14)C10—C9—Fe168.6 (4)
O5—Cu2—O996.54 (15)C8—C9—H9126.6
O7—Cu2—O995.69 (14)C10—C9—H9126.6
O1—Cu2—Cu185.09 (11)Fe1—C9—H9126.6
O3—Cu2—Cu183.30 (10)C11—C10—C9108.5 (6)
O5—Cu2—Cu184.32 (11)C11—C10—Fe170.4 (4)
O7—Cu2—Cu183.52 (10)C9—C10—Fe170.5 (4)
O9—Cu2—Cu1175.04 (10)C11—C10—H10125.8
C10—Fe1—C3108.2 (3)C9—C10—H10125.8
C10—Fe1—C1140.2 (3)Fe1—C10—H10125.0
C3—Fe1—C11130.6 (2)C10—C11—C7107.8 (6)
C10—Fe1—C2114.8 (3)C10—C11—Fe169.4 (4)
C3—Fe1—C241.4 (2)C7—C11—Fe170.2 (4)
C11—Fe1—C2107.5 (2)C10—C11—H11126.1
C10—Fe1—C867.5 (3)C7—C11—H11126.1
C3—Fe1—C8148.4 (3)Fe1—C11—H11125.9
C11—Fe1—C867.5 (3)O3—C12—O4126.4 (4)
C2—Fe1—C8170.0 (3)O3—C12—C13116.9 (4)
C10—Fe1—C767.7 (3)O4—C12—C13116.7 (4)
C3—Fe1—C7169.9 (3)C17—C13—C14107.8 (4)
C11—Fe1—C740.5 (3)C17—C13—C12126.1 (4)
C2—Fe1—C7130.8 (3)C14—C13—C12126.0 (4)
C8—Fe1—C740.0 (3)C17—C13—Fe270.8 (3)
C10—Fe1—C940.9 (3)C14—C13—Fe269.8 (3)
C3—Fe1—C9116.0 (3)C12—C13—Fe2122.2 (3)
C11—Fe1—C968.1 (3)C15—C14—C13107.7 (5)
C2—Fe1—C9147.9 (3)C15—C14—Fe270.4 (3)
C8—Fe1—C939.7 (3)C13—C14—Fe268.8 (3)
C7—Fe1—C967.6 (3)C15—C14—H14126.2
C10—Fe1—C6147.5 (3)C13—C14—H14126.2
C3—Fe1—C668.5 (3)Fe2—C14—H14126.1
C11—Fe1—C6116.1 (3)C14—C15—C16107.7 (4)
C2—Fe1—C640.7 (2)C14—C15—Fe269.2 (3)
C8—Fe1—C6132.5 (3)C16—C15—Fe269.8 (3)
C7—Fe1—C6109.6 (3)C14—C15—H15126.2
C9—Fe1—C6170.6 (3)C16—C15—H15126.2
C10—Fe1—C5170.4 (3)Fe2—C15—H15126.4
C3—Fe1—C567.6 (3)C17—C16—C15109.2 (5)
C11—Fe1—C5149.0 (3)C17—C16—Fe270.2 (3)
C2—Fe1—C568.2 (2)C15—C16—Fe269.9 (3)
C8—Fe1—C5111.2 (3)C17—C16—H16125.4
C7—Fe1—C5117.8 (3)C15—C16—H16125.4
C9—Fe1—C5132.1 (3)Fe2—C16—H16126.1
C6—Fe1—C540.4 (2)C16—C17—C13107.6 (5)
C10—Fe1—C4131.8 (3)C16—C17—Fe269.9 (3)
C3—Fe1—C440.5 (2)C13—C17—Fe268.4 (3)
C11—Fe1—C4169.8 (3)C16—C17—H17126.2
C2—Fe1—C468.6 (2)C13—C17—H17126.2
C8—Fe1—C4117.7 (3)Fe2—C17—H17127.0
C7—Fe1—C4148.9 (3)C22—C18—C19108.1 (6)
C9—Fe1—C4109.8 (3)C22—C18—Fe269.8 (3)
C6—Fe1—C467.7 (3)C19—C18—Fe270.0 (4)
C5—Fe1—C439.6 (3)C22—C18—H18125.9
C13—Fe2—C22106.6 (2)C19—C18—H18125.9
C13—Fe2—C1441.31 (18)Fe2—C18—H18125.8
C22—Fe2—C14115.8 (2)C20—C19—C18107.1 (7)
C13—Fe2—C18116.5 (2)C20—C19—Fe269.9 (4)
C22—Fe2—C1839.9 (3)C18—C19—Fe269.4 (4)
C14—Fe2—C18149.0 (3)C20—C19—H19126.5
C13—Fe2—C20166.5 (3)C18—C19—H19126.5
C22—Fe2—C2067.3 (2)Fe2—C19—H19125.8
C14—Fe2—C20129.1 (3)C19—C20—C21108.9 (6)
C18—Fe2—C2067.2 (3)C19—C20—Fe270.3 (4)
C13—Fe2—C21127.7 (2)C21—C20—Fe270.1 (3)
C22—Fe2—C2140.1 (2)C19—C20—H20125.6
C14—Fe2—C21107.0 (2)C21—C20—H20125.6
C18—Fe2—C2167.3 (3)Fe2—C20—H20125.7
C20—Fe2—C2140.1 (3)C22—C21—C20107.4 (6)
C13—Fe2—C19150.7 (3)C22—C21—Fe269.5 (3)
C22—Fe2—C1967.6 (3)C20—C21—Fe269.8 (4)
C14—Fe2—C19167.8 (3)C22—C21—H21126.3
C18—Fe2—C1940.5 (3)C20—C21—H21126.3
C20—Fe2—C1939.9 (3)Fe2—C21—H21126.0
C21—Fe2—C1967.5 (3)C18—C22—C21108.5 (6)
C13—Fe2—C1667.92 (19)C18—C22—Fe270.3 (4)
C22—Fe2—C16167.9 (2)C21—C22—Fe270.4 (3)
C14—Fe2—C1667.9 (2)C18—C22—H22125.7
C18—Fe2—C16131.6 (3)C21—C22—H22125.7
C20—Fe2—C16120.4 (2)Fe2—C22—H22125.1
C21—Fe2—C16151.7 (2)O5—C23—O6126.2 (4)
C19—Fe2—C16111.4 (3)O5—C23—C24116.3 (4)
C13—Fe2—C1568.55 (19)O6—C23—C24117.5 (4)
C22—Fe2—C15149.3 (3)C23—C24—H24A109.5
C14—Fe2—C1540.4 (2)C23—C24—H24B109.5
C18—Fe2—C15169.9 (3)H24A—C24—H24B109.5
C20—Fe2—C15110.1 (2)C23—C24—H24C109.5
C21—Fe2—C15117.5 (3)H24A—C24—H24C109.5
C19—Fe2—C15131.2 (3)H24B—C24—H24C109.5
C16—Fe2—C1540.3 (2)C26—C25—Fe370.2 (3)
C13—Fe2—C1740.7 (2)C26—C25—H25125.7
C22—Fe2—C17129.1 (2)Fe3—C25—H25126.0
C14—Fe2—C1768.6 (2)C25—C26—C27107.5 (6)
C18—Fe2—C17109.5 (2)C25—C26—Fe369.2 (4)
C20—Fe2—C17152.3 (3)C27—C26—Fe369.4 (4)
C21—Fe2—C17166.5 (2)C25—C26—H26126.2
C19—Fe2—C17119.3 (3)C27—C26—H26126.2
C16—Fe2—C1739.9 (2)Fe3—C26—H26126.6
C15—Fe2—C1768.0 (2)C28—C27—C26108.0 (5)
C31—Fe3—C28122.9 (4)C28—C27—Fe368.9 (4)
C31—Fe3—C2967.1 (4)C26—C27—Fe369.9 (4)
C28—Fe3—C29159.8 (4)C28—C27—H27126.0
C31—Fe3—C3239.9 (4)C26—C27—H27126.0
C28—Fe3—C32108.7 (4)Fe3—C27—H27126.8
C29—Fe3—C3266.6 (4)C27—C28—Fe370.8 (4)
C31—Fe3—C3366.7 (4)C27—C28—H28125.7
C28—Fe3—C33124.9 (4)Fe3—C28—H28125.1
C29—Fe3—C3339.0 (4)C33—C29—C30110.1 (11)
C32—Fe3—C3339.7 (4)C33—C29—Fe370.9 (6)
C31—Fe3—C3041.2 (4)C30—C29—Fe370.4 (6)
C28—Fe3—C30158.7 (3)C33—C29—H29125.0
C29—Fe3—C3040.2 (4)C30—C29—H29125.0
C32—Fe3—C3068.3 (4)Fe3—C29—H29125.3
C33—Fe3—C3067.2 (4)C29—C30—C31104.7 (11)
C31—Fe3—C25159.4 (4)C29—C30—Fe369.5 (5)
C28—Fe3—C2568.4 (3)C31—C30—Fe368.4 (5)
C29—Fe3—C25108.4 (4)C29—C30—H30127.7
C32—Fe3—C25158.9 (3)C31—C30—H30127.7
C33—Fe3—C25123.5 (3)Fe3—C30—H30126.0
C30—Fe3—C25122.2 (4)C32—C31—C30108.9 (10)
C31—Fe3—C27108.2 (4)C32—C31—Fe370.7 (5)
C28—Fe3—C2740.4 (2)C30—C31—Fe370.4 (5)
C29—Fe3—C27158.8 (4)C32—C31—H31125.5
C32—Fe3—C27124.1 (4)C30—C31—H31125.5
C33—Fe3—C27160.2 (4)Fe3—C31—H31125.0
C30—Fe3—C27122.5 (4)C31—C32—C33107.4 (11)
C25—Fe3—C2768.3 (3)C31—C32—Fe369.4 (6)
C31—Fe3—C26123.5 (4)C33—C32—Fe370.4 (6)
C28—Fe3—C2668.3 (3)C31—C32—H32126.3
C29—Fe3—C26123.2 (4)C33—C32—H32126.3
C32—Fe3—C26159.6 (3)Fe3—C32—H32125.5
C33—Fe3—C26158.4 (4)C29—C33—C32108.9 (11)
C30—Fe3—C26106.8 (4)C29—C33—Fe370.1 (7)
C25—Fe3—C2640.6 (2)C32—C33—Fe369.9 (6)
C27—Fe3—C2640.6 (3)C29—C33—H33125.6
C1—O1—Cu2121.7 (3)C32—C33—H33125.6
C1—O2—Cu1121.9 (3)Fe3—C33—H33126.1
C12—O3—Cu2121.7 (3)O8—C34—O7125.1 (4)
C12—O4—Cu1120.6 (3)O8—C34—C35117.7 (5)
C23—O5—Cu2121.2 (3)O7—C34—C35117.1 (5)
C23—O6—Cu1121.5 (3)C34—C35—H35A109.5
C34—O7—Cu2121.8 (3)C34—C35—H35B109.5
C34—O8—Cu1122.4 (3)H35A—C35—H35B109.5
C36—O9—Cu2120.8 (4)C34—C35—H35C109.5
C39—O10—Cu1124.7 (5)H35A—C35—H35C109.5
C36—N1—C38128.5 (8)H35B—C35—H35C109.5
C36—N1—C37117.1 (7)O9—C36—N1127.8 (7)
C38—N1—C37114.3 (7)O9—C36—H36116.1
C39—N2—C41128.1 (8)N1—C36—H36116.1
C39—N2—C40117.2 (6)N1—C37—H37A109.5
C41—N2—C40114.5 (7)N1—C37—H37B109.5
O1—C1—O2125.4 (4)H37A—C37—H37B109.5
O1—C1—C2116.7 (4)N1—C37—H37C109.5
O2—C1—C2117.9 (4)H37A—C37—H37C109.5
C6—C2—C3106.7 (4)H37B—C37—H37C109.5
C6—C2—C1128.8 (5)N1—C38—H38A109.5
C3—C2—C1124.5 (5)N1—C38—H38B109.5
C6—C2—Fe170.1 (3)H38A—C38—H38B109.5
C3—C2—Fe168.9 (3)N1—C38—H38C109.5
C1—C2—Fe1125.4 (3)H38A—C38—H38C109.5
C4—C3—C2108.3 (5)H38B—C38—H38C109.5
C4—C3—Fe171.1 (3)O10—C39—N2127.9 (8)
C2—C3—Fe169.7 (3)O10—C39—H39116.0
C4—C3—H3125.8N2—C39—H39116.0
C2—C3—H3125.8N2—C40—H40A109.5
Fe1—C3—H3124.9N2—C40—H40B109.5
C5—C4—C3107.9 (5)H40A—C40—H40B109.5
C5—C4—Fe169.9 (4)N2—C40—H40C109.5
C3—C4—Fe168.4 (3)H40A—C40—H40C109.5
C5—C4—H4126.0H40B—C40—H40C109.5
C3—C4—H4126.0N2—C41—H41A109.5
Fe1—C4—H4127.2N2—C41—H41B109.5
C4—C5—C6109.0 (5)H41A—C41—H41B109.5
C4—C5—Fe170.5 (3)N2—C41—H41C109.5
C6—C5—Fe169.6 (3)H41A—C41—H41C109.5
C4—C5—H5125.5H41B—C41—H41C109.5
O8—Cu1—Cu2—O176.80 (15)C12—C13—C14—C15175.7 (4)
O4—Cu1—Cu2—O1166.96 (15)Fe2—C13—C14—C1560.0 (3)
O6—Cu1—Cu2—O1102.69 (15)C17—C13—C14—Fe260.9 (3)
O2—Cu1—Cu2—O112.35 (15)C12—C13—C14—Fe2115.7 (4)
O10—Cu1—Cu2—O129 (6)C13—Fe2—C14—C15118.9 (4)
O8—Cu1—Cu2—O3102.83 (15)C22—Fe2—C14—C15155.0 (3)
O4—Cu1—Cu2—O312.67 (14)C18—Fe2—C14—C15173.2 (5)
O6—Cu1—Cu2—O377.68 (14)C20—Fe2—C14—C1574.2 (4)
O2—Cu1—Cu2—O3168.02 (15)C21—Fe2—C14—C15112.8 (4)
O10—Cu1—Cu2—O3151 (6)C19—Fe2—C14—C1551.5 (13)
O8—Cu1—Cu2—O5166.64 (15)C16—Fe2—C14—C1537.6 (3)
O4—Cu1—Cu2—O5103.20 (15)C17—Fe2—C14—C1580.8 (3)
O6—Cu1—Cu2—O512.86 (14)C22—Fe2—C14—C1386.1 (3)
O2—Cu1—Cu2—O577.48 (15)C18—Fe2—C14—C1354.3 (6)
O10—Cu1—Cu2—O5119 (6)C20—Fe2—C14—C13166.9 (3)
O8—Cu1—Cu2—O711.91 (14)C21—Fe2—C14—C13128.3 (3)
O4—Cu1—Cu2—O778.25 (15)C19—Fe2—C14—C13170.4 (12)
O6—Cu1—Cu2—O7168.59 (14)C16—Fe2—C14—C1381.3 (3)
O2—Cu1—Cu2—O7101.07 (15)C15—Fe2—C14—C13118.9 (4)
O10—Cu1—Cu2—O760 (6)C17—Fe2—C14—C1338.1 (3)
O8—Cu1—Cu2—O993.1 (12)C13—C14—C15—C160.4 (6)
O4—Cu1—Cu2—O92.9 (12)Fe2—C14—C15—C1659.4 (4)
O6—Cu1—Cu2—O987.4 (12)C13—C14—C15—Fe259.0 (3)
O2—Cu1—Cu2—O9177.8 (12)C13—Fe2—C15—C1438.4 (3)
O10—Cu1—Cu2—O9141 (6)C22—Fe2—C15—C1448.2 (5)
O3—Cu2—O1—C116.8 (9)C18—Fe2—C15—C14159.9 (13)
O5—Cu2—O1—C169.3 (4)C20—Fe2—C15—C14127.3 (4)
O7—Cu2—O1—C198.7 (4)C21—Fe2—C15—C1484.0 (4)
O9—Cu2—O1—C1165.9 (4)C19—Fe2—C15—C14167.3 (4)
Cu1—Cu2—O1—C115.0 (4)C16—Fe2—C15—C14119.1 (4)
O8—Cu1—O2—C170.2 (4)C17—Fe2—C15—C1482.4 (3)
O4—Cu1—O2—C111.1 (9)C13—Fe2—C15—C1680.7 (3)
O6—Cu1—O2—C197.7 (4)C22—Fe2—C15—C16167.3 (4)
O10—Cu1—O2—C1165.0 (4)C14—Fe2—C15—C16119.1 (4)
Cu2—Cu1—O2—C114.3 (4)C18—Fe2—C15—C1640.8 (15)
O1—Cu2—O3—C1216.2 (9)C20—Fe2—C15—C16113.6 (4)
O5—Cu2—O3—C12102.3 (3)C21—Fe2—C15—C16156.9 (3)
O7—Cu2—O3—C1265.5 (3)C19—Fe2—C15—C1673.6 (5)
O9—Cu2—O3—C12161.2 (3)C17—Fe2—C15—C1636.7 (3)
Cu1—Cu2—O3—C1218.0 (3)C14—C15—C16—C170.3 (6)
O8—Cu1—O4—C1296.2 (3)Fe2—C15—C16—C1759.3 (4)
O6—Cu1—O4—C1271.6 (3)C14—C15—C16—Fe259.0 (4)
O2—Cu1—O4—C1215.0 (9)C13—Fe2—C16—C1737.9 (3)
O10—Cu1—O4—C12168.8 (3)C22—Fe2—C16—C1727.4 (13)
Cu2—Cu1—O4—C1211.9 (3)C14—Fe2—C16—C1782.6 (3)
O1—Cu2—O5—C2398.9 (4)C18—Fe2—C16—C1768.6 (5)
O3—Cu2—O5—C2369.5 (4)C20—Fe2—C16—C17154.0 (4)
O7—Cu2—O5—C2320.6 (9)C21—Fe2—C16—C17167.4 (5)
O9—Cu2—O5—C23161.3 (3)C19—Fe2—C16—C17110.5 (4)
Cu1—Cu2—O5—C2313.8 (3)C15—Fe2—C16—C17120.3 (4)
O8—Cu1—O6—C2314.3 (8)C13—Fe2—C16—C1582.4 (3)
O4—Cu1—O6—C23101.3 (3)C22—Fe2—C16—C15147.7 (11)
O2—Cu1—O6—C2366.1 (3)C14—Fe2—C16—C1537.7 (3)
O10—Cu1—O6—C23162.5 (3)C18—Fe2—C16—C15171.1 (4)
Cu2—Cu1—O6—C2316.7 (3)C20—Fe2—C16—C1585.7 (4)
O1—Cu2—O7—C3470.8 (4)C21—Fe2—C16—C1547.2 (6)
O3—Cu2—O7—C3497.7 (4)C19—Fe2—C16—C15129.2 (4)
O5—Cu2—O7—C347.7 (9)C17—Fe2—C16—C15120.3 (4)
O9—Cu2—O7—C34170.4 (4)C15—C16—C17—C130.9 (6)
Cu1—Cu2—O7—C3414.5 (4)Fe2—C16—C17—C1358.2 (3)
O4—Cu1—O8—C3470.5 (4)C15—C16—C17—Fe259.2 (4)
O6—Cu1—O8—C3416.4 (9)C14—C13—C17—C161.2 (5)
O2—Cu1—O8—C3497.0 (4)C12—C13—C17—C16175.5 (4)
O10—Cu1—O8—C34166.7 (4)Fe2—C13—C17—C1659.2 (4)
Cu2—Cu1—O8—C3414.1 (4)C14—C13—C17—Fe260.3 (3)
O1—Cu2—O9—C36160.3 (4)C12—C13—C17—Fe2116.3 (4)
O3—Cu2—O9—C3619.1 (5)C13—Fe2—C17—C16119.4 (4)
O5—Cu2—O9—C36109.2 (5)C22—Fe2—C17—C16172.9 (4)
O7—Cu2—O9—C3671.2 (5)C14—Fe2—C17—C1680.7 (3)
Cu1—Cu2—O9—C369.5 (15)C18—Fe2—C17—C16132.4 (4)
O8—Cu1—O10—C3998.9 (5)C20—Fe2—C17—C1654.4 (7)
O4—Cu1—O10—C39171.0 (5)C21—Fe2—C17—C16153.8 (10)
O6—Cu1—O10—C3980.5 (5)C19—Fe2—C17—C1688.9 (4)
O2—Cu1—O10—C399.9 (5)C15—Fe2—C17—C1637.1 (3)
Cu2—Cu1—O10—C3951 (6)C22—Fe2—C17—C1367.8 (4)
Cu2—O1—C1—O29.0 (7)C14—Fe2—C17—C1338.7 (3)
Cu2—O1—C1—C2170.3 (3)C18—Fe2—C17—C13108.2 (4)
Cu1—O2—C1—O17.9 (7)C20—Fe2—C17—C13173.8 (5)
Cu1—O2—C1—C2172.8 (3)C21—Fe2—C17—C1334.4 (11)
O1—C1—C2—C6176.9 (5)C19—Fe2—C17—C13151.7 (4)
O2—C1—C2—C63.8 (8)C16—Fe2—C17—C13119.4 (4)
O1—C1—C2—C32.4 (7)C15—Fe2—C17—C1382.3 (3)
O2—C1—C2—C3177.0 (5)C13—Fe2—C18—C2284.5 (4)
O1—C1—C2—Fe184.9 (6)C14—Fe2—C18—C2247.6 (6)
O2—C1—C2—Fe195.7 (5)C20—Fe2—C18—C2281.3 (4)
C10—Fe1—C2—C6152.4 (4)C21—Fe2—C18—C2237.7 (3)
C3—Fe1—C2—C6117.9 (5)C19—Fe2—C18—C22119.1 (6)
C11—Fe1—C2—C6109.9 (4)C16—Fe2—C18—C22167.6 (3)
C8—Fe1—C2—C651.1 (15)C15—Fe2—C18—C22158.0 (13)
C7—Fe1—C2—C671.2 (4)C17—Fe2—C18—C22128.3 (3)
C9—Fe1—C2—C6173.6 (5)C13—Fe2—C18—C19156.5 (4)
C5—Fe1—C2—C637.5 (4)C22—Fe2—C18—C19119.1 (6)
C4—Fe1—C2—C680.2 (4)C14—Fe2—C18—C19166.7 (5)
C10—Fe1—C2—C389.7 (4)C20—Fe2—C18—C1937.8 (4)
C11—Fe1—C2—C3132.3 (4)C21—Fe2—C18—C1981.4 (5)
C8—Fe1—C2—C3169.0 (13)C16—Fe2—C18—C1973.3 (5)
C7—Fe1—C2—C3171.0 (4)C15—Fe2—C18—C1938.9 (16)
C9—Fe1—C2—C355.8 (6)C17—Fe2—C18—C19112.6 (4)
C6—Fe1—C2—C3117.9 (5)C22—C18—C19—C200.4 (7)
C5—Fe1—C2—C380.4 (4)Fe2—C18—C19—C2060.0 (5)
C4—Fe1—C2—C337.7 (3)C22—C18—C19—Fe259.6 (4)
C10—Fe1—C2—C128.4 (5)C13—Fe2—C19—C20165.1 (4)
C3—Fe1—C2—C1118.1 (6)C22—Fe2—C19—C2080.8 (4)
C11—Fe1—C2—C114.2 (5)C14—Fe2—C19—C2028.0 (15)
C8—Fe1—C2—C172.9 (15)C18—Fe2—C19—C20118.1 (6)
C7—Fe1—C2—C152.9 (6)C21—Fe2—C19—C2037.3 (4)
C9—Fe1—C2—C162.3 (7)C16—Fe2—C19—C20112.2 (4)
C6—Fe1—C2—C1124.0 (6)C15—Fe2—C19—C2070.3 (5)
C5—Fe1—C2—C1161.5 (5)C17—Fe2—C19—C20155.7 (4)
C4—Fe1—C2—C1155.8 (5)C13—Fe2—C19—C1846.9 (7)
C6—C2—C3—C40.7 (6)C22—Fe2—C19—C1837.3 (4)
C1—C2—C3—C4179.9 (5)C14—Fe2—C19—C18146.1 (11)
Fe1—C2—C3—C461.0 (4)C20—Fe2—C19—C18118.1 (6)
C6—C2—C3—Fe160.2 (4)C21—Fe2—C19—C1880.9 (5)
C1—C2—C3—Fe1119.2 (5)C16—Fe2—C19—C18129.7 (4)
C10—Fe1—C3—C4134.1 (4)C15—Fe2—C19—C18171.5 (4)
C11—Fe1—C3—C4173.1 (4)C17—Fe2—C19—C1886.1 (5)
C2—Fe1—C3—C4118.7 (5)C18—C19—C20—C210.1 (7)
C8—Fe1—C3—C457.7 (7)Fe2—C19—C20—C2159.6 (4)
C7—Fe1—C3—C4161.2 (15)C18—C19—C20—Fe259.7 (4)
C9—Fe1—C3—C490.5 (5)C13—Fe2—C20—C19147.3 (9)
C6—Fe1—C3—C480.4 (4)C22—Fe2—C20—C1981.9 (5)
C5—Fe1—C3—C436.7 (4)C14—Fe2—C20—C19172.6 (4)
C10—Fe1—C3—C2107.2 (4)C18—Fe2—C20—C1938.4 (5)
C11—Fe1—C3—C268.2 (4)C21—Fe2—C20—C19119.7 (6)
C8—Fe1—C3—C2176.4 (5)C16—Fe2—C20—C1987.6 (5)
C7—Fe1—C3—C242.5 (17)C15—Fe2—C20—C19131.0 (5)
C9—Fe1—C3—C2150.7 (3)C17—Fe2—C20—C1950.4 (7)
C6—Fe1—C3—C238.3 (3)C13—Fe2—C20—C2127.6 (12)
C5—Fe1—C3—C282.0 (3)C22—Fe2—C20—C2137.8 (4)
C4—Fe1—C3—C2118.7 (5)C14—Fe2—C20—C2167.7 (5)
C2—C3—C4—C51.1 (6)C18—Fe2—C20—C2181.3 (5)
Fe1—C3—C4—C558.9 (4)C19—Fe2—C20—C21119.7 (6)
C2—C3—C4—Fe160.1 (4)C16—Fe2—C20—C21152.7 (4)
C10—Fe1—C4—C5173.9 (4)C15—Fe2—C20—C21109.2 (4)
C3—Fe1—C4—C5119.8 (5)C17—Fe2—C20—C21170.1 (4)
C11—Fe1—C4—C5150.9 (15)C19—C20—C21—C220.2 (7)
C2—Fe1—C4—C581.3 (4)Fe2—C20—C21—C2259.5 (4)
C8—Fe1—C4—C590.2 (4)C19—C20—C21—Fe259.8 (5)
C7—Fe1—C4—C553.9 (7)C13—Fe2—C21—C2269.2 (5)
C9—Fe1—C4—C5133.0 (4)C14—Fe2—C21—C22110.1 (4)
C6—Fe1—C4—C537.3 (3)C18—Fe2—C21—C2237.5 (4)
C10—Fe1—C4—C366.3 (5)C20—Fe2—C21—C22118.6 (6)
C11—Fe1—C4—C331.1 (17)C19—Fe2—C21—C2281.5 (5)
C2—Fe1—C4—C338.5 (3)C16—Fe2—C21—C22175.2 (5)
C8—Fe1—C4—C3149.9 (4)C15—Fe2—C21—C22152.4 (4)
C7—Fe1—C4—C3173.7 (5)C17—Fe2—C21—C2241.4 (12)
C9—Fe1—C4—C3107.2 (4)C13—Fe2—C21—C20172.2 (4)
C6—Fe1—C4—C382.5 (4)C22—Fe2—C21—C20118.6 (6)
C5—Fe1—C4—C3119.8 (5)C14—Fe2—C21—C20131.3 (4)
C3—C4—C5—C61.1 (7)C18—Fe2—C21—C2081.1 (5)
Fe1—C4—C5—C659.0 (4)C19—Fe2—C21—C2037.0 (4)
C3—C4—C5—Fe158.0 (4)C16—Fe2—C21—C2056.6 (7)
C10—Fe1—C5—C428.4 (17)C15—Fe2—C21—C2089.0 (5)
C3—Fe1—C5—C437.5 (3)C17—Fe2—C21—C20160.0 (9)
C11—Fe1—C5—C4170.4 (5)C19—C18—C22—C210.5 (7)
C2—Fe1—C5—C482.3 (4)Fe2—C18—C22—C2160.3 (4)
C8—Fe1—C5—C4108.4 (4)C19—C18—C22—Fe259.8 (4)
C7—Fe1—C5—C4151.9 (4)C20—C21—C22—C180.5 (7)
C9—Fe1—C5—C467.9 (5)Fe2—C21—C22—C1860.2 (4)
C6—Fe1—C5—C4120.1 (5)C20—C21—C22—Fe259.8 (4)
C10—Fe1—C5—C6148.5 (15)C13—Fe2—C22—C18111.6 (4)
C3—Fe1—C5—C682.6 (4)C14—Fe2—C22—C18155.0 (4)
C11—Fe1—C5—C650.3 (7)C20—Fe2—C22—C1881.2 (5)
C2—Fe1—C5—C637.8 (4)C21—Fe2—C22—C18119.0 (5)
C8—Fe1—C5—C6131.5 (4)C19—Fe2—C22—C1837.9 (4)
C7—Fe1—C5—C688.0 (5)C16—Fe2—C22—C1850.1 (13)
C9—Fe1—C5—C6172.0 (4)C15—Fe2—C22—C18172.6 (4)
C4—Fe1—C5—C6120.1 (5)C17—Fe2—C22—C1872.5 (5)
C4—C5—C6—C20.6 (7)C13—Fe2—C22—C21129.4 (4)
Fe1—C5—C6—C259.0 (4)C14—Fe2—C22—C2186.0 (4)
C4—C5—C6—Fe159.6 (4)C18—Fe2—C22—C21119.0 (5)
C3—C2—C6—C50.1 (6)C20—Fe2—C22—C2137.8 (4)
C1—C2—C6—C5179.5 (5)C19—Fe2—C22—C2181.1 (5)
Fe1—C2—C6—C559.5 (4)C16—Fe2—C22—C21169.1 (10)
C3—C2—C6—Fe159.5 (4)C15—Fe2—C22—C2153.5 (6)
C1—C2—C6—Fe1119.9 (5)C17—Fe2—C22—C21168.5 (4)
C10—Fe1—C6—C5170.7 (5)Cu2—O5—C23—O65.5 (6)
C3—Fe1—C6—C580.4 (4)Cu2—O5—C23—C24174.2 (3)
C11—Fe1—C6—C5153.8 (4)Cu1—O6—C23—O512.0 (6)
C2—Fe1—C6—C5119.3 (5)Cu1—O6—C23—C24168.3 (3)
C8—Fe1—C6—C571.2 (5)C31—Fe3—C25—C2646.1 (12)
C7—Fe1—C6—C5110.2 (4)C28—Fe3—C25—C2681.4 (4)
C9—Fe1—C6—C540 (2)C29—Fe3—C25—C26119.9 (5)
C4—Fe1—C6—C536.6 (4)C32—Fe3—C25—C26167.6 (10)
C10—Fe1—C6—C251.4 (6)C33—Fe3—C25—C26160.2 (5)
C3—Fe1—C6—C238.9 (3)C30—Fe3—C25—C2677.8 (6)
C11—Fe1—C6—C286.9 (4)C27—Fe3—C25—C2637.8 (4)
C8—Fe1—C6—C2169.5 (4)Fe3—C25—C26—C2759.1 (5)
C7—Fe1—C6—C2130.5 (4)C31—Fe3—C26—C25162.3 (5)
C9—Fe1—C6—C2158.8 (17)C28—Fe3—C26—C2581.8 (4)
C5—Fe1—C6—C2119.3 (5)C29—Fe3—C26—C2579.4 (5)
C4—Fe1—C6—C282.7 (4)C32—Fe3—C26—C25167.1 (10)
C10—Fe1—C7—C881.0 (5)C33—Fe3—C26—C2550.0 (11)
C3—Fe1—C7—C8149.2 (15)C30—Fe3—C26—C25120.3 (5)
C11—Fe1—C7—C8118.7 (6)C27—Fe3—C26—C25119.1 (6)
C2—Fe1—C7—C8174.7 (4)C31—Fe3—C26—C2778.6 (6)
C9—Fe1—C7—C836.6 (4)C28—Fe3—C26—C2737.3 (4)
C6—Fe1—C7—C8133.8 (4)C29—Fe3—C26—C27161.5 (4)
C5—Fe1—C7—C890.4 (5)C32—Fe3—C26—C2748.1 (12)
C4—Fe1—C7—C854.8 (8)C33—Fe3—C26—C27169.1 (9)
C10—Fe1—C7—C1137.7 (4)C30—Fe3—C26—C27120.7 (5)
C3—Fe1—C7—C1130.5 (18)C25—Fe3—C26—C27119.1 (6)
C2—Fe1—C7—C1166.6 (5)C25—C26—C27—C280.5 (8)
C8—Fe1—C7—C11118.7 (6)Fe3—C26—C27—C2858.5 (5)
C9—Fe1—C7—C1182.0 (5)C25—C26—C27—Fe359.0 (5)
C6—Fe1—C7—C11107.6 (4)C31—Fe3—C27—C28119.8 (5)
C5—Fe1—C7—C11151.0 (4)C29—Fe3—C27—C28166.8 (9)
C4—Fe1—C7—C11173.4 (5)C32—Fe3—C27—C2878.6 (5)
C11—C7—C8—C90.4 (8)C33—Fe3—C27—C2848.5 (11)
Fe1—C7—C8—C959.8 (5)C30—Fe3—C27—C28162.9 (5)
C11—C7—C8—Fe159.3 (5)C25—Fe3—C27—C2881.9 (4)
C10—Fe1—C8—C938.6 (4)C26—Fe3—C27—C28119.6 (5)
C3—Fe1—C8—C949.7 (7)C31—Fe3—C27—C26120.6 (5)
C11—Fe1—C8—C982.3 (5)C28—Fe3—C27—C26119.6 (5)
C2—Fe1—C8—C9144.2 (13)C29—Fe3—C27—C2647.2 (10)
C7—Fe1—C8—C9120.4 (6)C32—Fe3—C27—C26161.8 (5)
C6—Fe1—C8—C9172.3 (4)C33—Fe3—C27—C26168.1 (9)
C5—Fe1—C8—C9131.2 (5)C30—Fe3—C27—C2677.5 (5)
C4—Fe1—C8—C988.1 (5)C25—Fe3—C27—C2637.8 (4)
C10—Fe1—C8—C781.8 (5)C26—C27—C28—Fe359.2 (5)
C3—Fe1—C8—C7170.1 (5)C31—Fe3—C28—C2779.2 (6)
C11—Fe1—C8—C738.1 (4)C29—Fe3—C28—C27166.1 (10)
C2—Fe1—C8—C723.8 (16)C32—Fe3—C28—C27121.0 (5)
C9—Fe1—C8—C7120.4 (6)C33—Fe3—C28—C27162.0 (5)
C6—Fe1—C8—C767.3 (5)C30—Fe3—C28—C2743.0 (11)
C5—Fe1—C8—C7108.5 (5)C25—Fe3—C28—C2781.4 (4)
C4—Fe1—C8—C7151.6 (4)C26—Fe3—C28—C2737.5 (4)
C7—C8—C9—C100.8 (8)C31—Fe3—C29—C3380.7 (7)
Fe1—C8—C9—C1058.9 (4)C28—Fe3—C29—C3343.5 (13)
C7—C8—C9—Fe159.7 (5)C32—Fe3—C29—C3337.1 (6)
C10—Fe1—C9—C8118.3 (6)C30—Fe3—C29—C33120.6 (9)
C3—Fe1—C9—C8153.6 (4)C25—Fe3—C29—C33120.9 (6)
C11—Fe1—C9—C880.7 (5)C27—Fe3—C29—C33161.9 (8)
C2—Fe1—C9—C8169.0 (4)C26—Fe3—C29—C33163.3 (5)
C7—Fe1—C9—C836.8 (4)C31—Fe3—C29—C3039.9 (7)
C6—Fe1—C9—C837 (2)C28—Fe3—C29—C30164.1 (9)
C5—Fe1—C9—C871.0 (6)C32—Fe3—C29—C3083.5 (7)
C4—Fe1—C9—C8109.9 (5)C33—Fe3—C29—C30120.6 (9)
C3—Fe1—C9—C1088.2 (5)C25—Fe3—C29—C30118.5 (6)
C11—Fe1—C9—C1037.5 (4)C27—Fe3—C29—C3041.3 (13)
C2—Fe1—C9—C1050.7 (7)C26—Fe3—C29—C3076.1 (7)
C8—Fe1—C9—C10118.3 (6)C33—C29—C30—C310.3 (10)
C7—Fe1—C9—C1081.4 (5)Fe3—C29—C30—C3159.7 (6)
C6—Fe1—C9—C10155.6 (17)C33—C29—C30—Fe360.0 (7)
C5—Fe1—C9—C10170.7 (4)C31—Fe3—C30—C29116.1 (10)
C4—Fe1—C9—C10131.8 (4)C28—Fe3—C30—C29164.9 (9)
C8—C9—C10—C110.8 (7)C32—Fe3—C30—C2979.0 (7)
Fe1—C9—C10—C1160.4 (5)C33—Fe3—C30—C2936.0 (6)
C8—C9—C10—Fe159.6 (5)C25—Fe3—C30—C2980.3 (7)
C3—Fe1—C10—C11132.2 (4)C27—Fe3—C30—C29163.5 (6)
C2—Fe1—C10—C1188.1 (4)C26—Fe3—C30—C29121.9 (7)
C8—Fe1—C10—C1181.3 (5)C28—Fe3—C30—C3148.9 (13)
C7—Fe1—C10—C1137.9 (4)C29—Fe3—C30—C31116.1 (10)
C9—Fe1—C10—C11118.9 (6)C32—Fe3—C30—C3137.0 (6)
C6—Fe1—C10—C1153.9 (7)C33—Fe3—C30—C3180.1 (7)
C5—Fe1—C10—C11165.1 (15)C25—Fe3—C30—C31163.7 (6)
C4—Fe1—C10—C11170.9 (4)C27—Fe3—C30—C3180.4 (7)
C3—Fe1—C10—C9109.0 (5)C26—Fe3—C30—C31122.0 (6)
C11—Fe1—C10—C9118.9 (6)C29—C30—C31—C320.0 (10)
C2—Fe1—C10—C9153.0 (4)Fe3—C30—C31—C3260.5 (6)
C8—Fe1—C10—C937.5 (5)C29—C30—C31—Fe360.4 (6)
C7—Fe1—C10—C980.9 (5)C28—Fe3—C31—C3279.7 (7)
C6—Fe1—C10—C9172.8 (5)C29—Fe3—C31—C3280.4 (7)
C5—Fe1—C10—C946.2 (17)C33—Fe3—C31—C3237.8 (7)
C4—Fe1—C10—C970.2 (5)C30—Fe3—C31—C32119.3 (10)
C9—C10—C11—C70.5 (7)C25—Fe3—C31—C32161.8 (9)
Fe1—C10—C11—C759.9 (5)C27—Fe3—C31—C32121.8 (6)
C9—C10—C11—Fe160.5 (5)C26—Fe3—C31—C32164.0 (6)
C8—C7—C11—C100.1 (8)C28—Fe3—C31—C30160.9 (6)
Fe1—C7—C11—C1059.5 (5)C29—Fe3—C31—C3039.0 (7)
C8—C7—C11—Fe159.6 (5)C32—Fe3—C31—C30119.3 (10)
C3—Fe1—C11—C1067.9 (5)C33—Fe3—C31—C3081.5 (7)
C2—Fe1—C11—C10108.0 (4)C25—Fe3—C31—C3042.5 (14)
C8—Fe1—C11—C1081.2 (5)C27—Fe3—C31—C30118.9 (6)
C7—Fe1—C11—C10118.8 (6)C26—Fe3—C31—C3076.7 (7)
C9—Fe1—C11—C1038.2 (4)C30—C31—C32—C330.2 (10)
C6—Fe1—C11—C10151.1 (4)Fe3—C31—C32—C3360.5 (6)
C5—Fe1—C11—C10175.2 (5)C30—C31—C32—Fe360.3 (6)
C4—Fe1—C11—C1041.7 (17)C28—Fe3—C32—C31119.3 (6)
C10—Fe1—C11—C7118.8 (6)C29—Fe3—C32—C3181.8 (7)
C3—Fe1—C11—C7173.3 (4)C33—Fe3—C32—C31118.2 (10)
C2—Fe1—C11—C7133.2 (4)C30—Fe3—C32—C3138.2 (7)
C8—Fe1—C11—C737.6 (5)C25—Fe3—C32—C31162.3 (9)
C9—Fe1—C11—C780.7 (5)C27—Fe3—C32—C3177.2 (7)
C6—Fe1—C11—C790.1 (5)C26—Fe3—C32—C3141.4 (14)
C5—Fe1—C11—C756.4 (7)C31—Fe3—C32—C33118.2 (10)
C4—Fe1—C11—C7160.5 (14)C28—Fe3—C32—C33122.5 (6)
Cu2—O3—C12—O415.3 (6)C29—Fe3—C32—C3336.4 (6)
Cu2—O3—C12—C13163.7 (3)C30—Fe3—C32—C3380.1 (7)
Cu1—O4—C12—O32.0 (6)C25—Fe3—C32—C3344.0 (14)
Cu1—O4—C12—C13179.0 (3)C27—Fe3—C32—C33164.6 (6)
O3—C12—C13—C17170.3 (4)C26—Fe3—C32—C33159.6 (9)
O4—C12—C13—C178.8 (7)C30—C29—C33—C320.4 (10)
O3—C12—C13—C145.8 (7)Fe3—C29—C33—C3259.3 (6)
O4—C12—C13—C14175.1 (4)C30—C29—C33—Fe359.7 (7)
O3—C12—C13—Fe281.5 (5)C31—C32—C33—C290.4 (10)
O4—C12—C13—Fe297.5 (4)Fe3—C32—C33—C2959.4 (7)
C22—Fe2—C13—C17131.4 (3)C31—C32—C33—Fe359.8 (6)
C14—Fe2—C13—C17118.2 (4)C31—Fe3—C33—C2982.0 (7)
C18—Fe2—C13—C1789.6 (4)C28—Fe3—C33—C29163.2 (5)
C20—Fe2—C13—C17167.5 (10)C32—Fe3—C33—C29120.0 (9)
C21—Fe2—C13—C17170.4 (3)C30—Fe3—C33—C2937.0 (6)
C19—Fe2—C13—C1757.6 (6)C25—Fe3—C33—C2977.5 (7)
C16—Fe2—C13—C1737.1 (3)C27—Fe3—C33—C29160.6 (8)
C15—Fe2—C13—C1780.7 (3)C26—Fe3—C33—C2940.8 (12)
C22—Fe2—C13—C14110.3 (3)C31—Fe3—C33—C3238.0 (6)
C18—Fe2—C13—C14152.1 (4)C28—Fe3—C33—C3276.9 (7)
C20—Fe2—C13—C1449.3 (11)C29—Fe3—C33—C32120.0 (9)
C21—Fe2—C13—C1471.4 (4)C30—Fe3—C33—C3282.9 (7)
C19—Fe2—C13—C14175.8 (5)C25—Fe3—C33—C32162.5 (6)
C16—Fe2—C13—C1481.1 (3)C27—Fe3—C33—C3240.6 (13)
C15—Fe2—C13—C1437.5 (3)C26—Fe3—C33—C32160.8 (8)
C17—Fe2—C13—C14118.2 (4)Cu1—O8—C34—O77.6 (7)
C22—Fe2—C13—C1210.2 (4)Cu1—O8—C34—C35173.9 (4)
C14—Fe2—C13—C12120.6 (5)Cu2—O7—C34—O88.8 (7)
C18—Fe2—C13—C1231.6 (5)Cu2—O7—C34—C35169.7 (4)
C20—Fe2—C13—C1271.3 (11)Cu2—O9—C36—N1175.1 (5)
C21—Fe2—C13—C1249.2 (5)C38—N1—C36—O9178.8 (7)
C19—Fe2—C13—C1263.6 (7)C37—N1—C36—O92.3 (11)
C16—Fe2—C13—C12158.3 (4)Cu1—O10—C39—N2176.0 (5)
C15—Fe2—C13—C12158.1 (5)C41—N2—C39—O10177.9 (7)
C17—Fe2—C13—C12121.2 (5)C40—N2—C39—O103.4 (10)
C17—C13—C14—C151.0 (5)

Experimental details

Crystal data
Chemical formula[Cu2Fe3(C5H5)3(C2H3O2)(C6H4O2)3(C3H7NO)2]0.84 [Cu2Fe2(C5H5)2(C2H3O2)2(C6H4O2)2(C3H7NO)2]0.16
Mr992.40
Crystal system, space groupTriclinic, P1
Temperature (K)298
a, b, c (Å)10.948 (2), 13.548 (3), 15.828 (3)
α, β, γ (°)108.96 (3), 94.57 (3), 110.33 (3)
V3)2032.3 (10)
Z2
Radiation typeMo Kα
µ (mm1)2.08
Crystal size (mm)0.30 × 0.26 × 0.26
Data collection
DiffractometerRigaku R-AXIS RAPID
diffractometer
Absorption correctionMulti-scan
(ABSCOR; Higashi, 1995)
Tmin, Tmax0.567, 0.607
No. of measured, independent and
observed [I > 2σ(I)] reflections
19821, 9106, 6613
Rint0.045
(sin θ/λ)max1)0.649
Refinement
R[F2 > 2σ(F2)], wR(F2), S 0.053, 0.155, 1.06
No. of reflections9106
No. of parameters488
H-atom treatmentH atoms treated by a mixture of independent and constrained refinement
Δρmax, Δρmin (e Å3)0.86, 0.76

Computer programs: RAPID-AUTO (Rigaku, 1998), SHELXS97 (Sheldrick, 2008), SHELXL97 (Sheldrick, 2008), SHELXTL/PC (Sheldrick, 1993).

 

References

First citationHigashi, T. (1995). ABSCOR. Rigaku Corporation, Tokyo, Japan.  Google Scholar
First citationLuo, J.-H., Huang, C.-C., Huang, X.-H. & Wang, J.-G. (2008). Acta Cryst. C64, m121–m122.  Web of Science CSD CrossRef CAS IUCr Journals Google Scholar
First citationRigaku (1998). RAPID-AUTO. Rigaku Corporation, Tokyo, Japan.  Google Scholar
First citationSheldrick, G. M. (1993). SHELXTL/PC. Siemens Analytical X-ray Instruments Inc., Madison, Wisconsin, USA.  Google Scholar
First citationSheldrick, G. M. (2008). Acta Cryst. A64, 112–122.  Web of Science CrossRef CAS IUCr Journals Google Scholar

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