metal-organic compounds\(\def\hfill{\hskip 5em}\def\hfil{\hskip 3em}\def\eqno#1{\hfil {#1}}\)

Journal logoIUCrDATA
ISSN: 2414-3146

Bis­(di­methyl­amido-κN)bis­[2-(pyrrol-2-yl­methyl­ene­amino)-2′-meth­­oxy-6,6′-di­methyl-1,1′-bi­phenyl-κ2N,N′]vanadium(IV) toluene monosolvate

aDepartment of Chemistry, Beijing Normal University, Beijing 100875, People's Republic of China
*Correspondence e-mail: dengxuebin@bnu.edu.cn

Edited by P. C. Healy, Griffith University, Australia (Received 4 September 2016; accepted 6 September 2016; online 13 September 2016)

Reaction of the Schiff base ligand (R)-2-(pyrrol-2-yl­methyl­ene­amino)-2′-meth­oxy-6,6′-dimethyl-1,1′-biphenyl with tetra­kis­(di­methyl­amido)­vanadium in toluene gives the mononuclear VIV title complex, [V(C2H6N)2(C20H19N2O)2]·C7H8, which was isolated as red crystals. The VIV cation is coordinated by two monoanionic bidentate Schiff base ligands and two N atoms of two di­methyl­amide anions in a VN6 distorted octa­hedral coordination geometry, in which two N atoms from the di­methyl­amide anions are placed in a cis-configuration.

3D view (loading...)
[Scheme 3D1]
Chemical scheme
[Scheme 1]

Structure description

Crystals of the title compound were obtained by the reaction of the Schiff base ligand (R)-2-(pyrrol-2-yl­methyl­ene­amino)-2′-meth­oxy-6,6′-dimethyl-1,1′-biphenyl and tetra­kis­(di­methyl­amido)­vanadium in toluene during the synthesis of new vanadium catalysts. The title compound consists of a VIV cation coordinated by two monoanionic bidentate Schiff base ligands and two N atoms of two di­methyl­amide anions, and one toluene solvent mol­ecule. The VIV coordination sphere can be described as a VN6 distorted octa­hedron (Fig. 1[link]), in which two N atoms from the di­methyl­amide anions are placed in cis-configuration. In the title complex, the N-donors from the Schiff base ligands are elongated [V—N = 2.1471 (18)–2.1678 (18) Å], whereas the N-donors from the di­methyl­amide anions have normal V—N bond lengths [1.8963 (19)–1.8993 (19) Å]. The titanium and zirconium complexes derived from the same Schiff base ligand have been reported, see: Zi et al. (2008[Zi, G., Wang, Q., Xiang, L. & Song, H. (2008). Dalton Trans. pp. 5930-5944.]).

[Figure 1]
Figure 1
The asymmetric unit of the title compound showing 40% probability displacement ellipsoids (the hydrogen atoms and the solvent toluene mol­ecule are omitted for clarity).

Synthesis and crystallization

A toluene solution (10 ml) of Schiff base ligand (R)-2-(pyrrol-2-yl­methyl­ene­amino)-2′-meth­oxy-6,6′-dimethyl-1,1′-biphenyl (0.30 g, 1.0 mmol) was slowly added to a toluene solution (10 ml) of tetra­kis­(di­methyl­amido)­vanadium (0.11 g, 0.5 mmol) with stirring at room temperature. After the resulting red solution had been stirred at room temperature for one day, the solution was filtered. The filtrate was concentrated to about 2 ml under vacuum. Red crystals of the title compound were isolated when this solution was kept at room temperature for three days. Yield: 0.33 g (78%).

Refinement

Crystal data, data collection and structure refinement details are summarized in Table 1[link].

Table 1
Experimental details

Crystal data
Chemical formula [V(C2H6N)2(C20H19N2O)2]·C7H8
Mr 837.97
Crystal system, space group Orthorhombic, P212121
Temperature (K) 113
a, b, c (Å) 12.140 (1), 19.2980 (15), 19.4490 (16)
V3) 4556.5 (6)
Z 4
Radiation type Cu Kα
μ (mm−1) 2.17
Crystal size (mm) 0.22 × 0.20 × 0.16
 
Data collection
Diffractometer Rigaku Saturn70 CCD camera
Absorption correction Multi-scan (CrystalClear-SM Expert; Rigaku, 2009[Rigaku (2009). CrystalClear-SM Expert. Rigaku Corporation, Tokyo, Japan.])
Tmin, Tmax 0.66, 0.75
No. of measured, independent and observed [I > 2σ(I)] reflections 49860, 8875, 8286
Rint 0.059
(sin θ/λ)max−1) 0.618
 
Refinement
R[F2 > 2σ(F2)], wR(F2), S 0.030, 0.068, 1.02
No. of reflections 8875
No. of parameters 552
H-atom treatment H-atom parameters constrained
Δρmax, Δρmin (e Å−3) 0.18, −0.25
Absolute structure Flack x determined using 3251 quotients [(I+)−(I)]/[(I+)+(I)] (Parsons et al., 2013[Parsons, S., Flack, H. D. & Wagner, T. (2013). Acta Cryst. B69, 249-259.])
Absolute structure parameter 0.0028 (19)
Computer programs: CrystalClear-SM Expert (Rigaku, 2009[Rigaku (2009). CrystalClear-SM Expert. Rigaku Corporation, Tokyo, Japan.]), SHELXS97 (Sheldrick, 2008[Sheldrick, G. M. (2008). Acta Cryst. A64, 112-122.]), SHELXL2014 (Sheldrick, 2015[Sheldrick, G. M. (2015). Acta Cryst. A71, 3-8.]), CrystalStructure (Rigaku, 2010[Rigaku (2010). CrystalStructure. Rigaku Corporation, Tokyo, Japan.]) and publCIF (Westrip, 2010[Westrip, S. P. (2010). J. Appl. Cryst. 43, 920-925.]).

Structural data


Computing details top

Data collection: CrystalClear-SM Expert (Rigaku, 2009); cell refinement: CrystalClear-SM Expert (Rigaku, 2009); data reduction: CrystalClear-SM Expert (Rigaku, 2009); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL2014 (Sheldrick, 2015); molecular graphics: CrystalStructure (Rigaku, 2010); software used to prepare material for publication: publCIF (Westrip, 2010).

Bis(dimethylamido-κN)Bis[2-(pyrrol-2-ylmethyleneamino)-2'-methoxy-6,6'-dimethyl-1,1'-biphenyl-κ2N,N']vanadium(IV) toluene monosolvate top
Crystal data top
[V(C2H6N)2(C20H19N2O)2]·C7H8Dx = 1.222 Mg m3
Mr = 837.97Cu Kα radiation, λ = 1.54187 Å
Orthorhombic, P212121Cell parameters from 5675 reflections
a = 12.140 (1) Åθ = 27.5–72.3°
b = 19.2980 (15) ŵ = 2.17 mm1
c = 19.4490 (16) ÅT = 113 K
V = 4556.5 (6) Å3Prism, red
Z = 40.22 × 0.20 × 0.16 mm
F(000) = 1780
Data collection top
Rigaku Saturn70 CCD camera
diffractometer
8875 independent reflections
Radiation source: fine-focus sealed tube8286 reflections with I > 2σ(I)
Multilayer monochromatorRint = 0.059
ω scansθmax = 72.5°, θmin = 3.2°
Absorption correction: multi-scan
(CrystalClear-SM Expert; Rigaku, 2009)
h = 1114
Tmin = 0.66, Tmax = 0.75k = 2322
49860 measured reflectionsl = 2423
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)] = 0.030H-atom parameters constrained
wR(F2) = 0.068 w = 1/[σ2(Fo2) + (0.0253P)2]
where P = (Fo2 + 2Fc2)/3
S = 1.02(Δ/σ)max = 0.001
8875 reflectionsΔρmax = 0.18 e Å3
552 parametersΔρmin = 0.25 e Å3
0 restraintsAbsolute structure: Flack x determined using 3251 quotients [(I+)-(I-)]/[(I+)+(I-)] (Parsons et al., 2013)
Primary atom site location: structure-invariant direct methodsAbsolute structure parameter: 0.0028 (19)
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*/Ueq
V10.21029 (3)0.22412 (2)0.34762 (2)0.01745 (9)
O10.27959 (16)0.49262 (8)0.20219 (8)0.0300 (4)
O20.01883 (14)0.01342 (9)0.50417 (9)0.0318 (4)
N10.22032 (16)0.31292 (9)0.28127 (9)0.0190 (4)
N20.16986 (16)0.30961 (10)0.41538 (9)0.0202 (4)
N30.14730 (16)0.15604 (9)0.42558 (9)0.0194 (4)
N40.03559 (16)0.22780 (10)0.33013 (9)0.0205 (4)
N50.22971 (16)0.15586 (10)0.27833 (9)0.0225 (4)
N60.35897 (16)0.22403 (10)0.37752 (9)0.0227 (4)
C10.33105 (19)0.35760 (12)0.18341 (11)0.0212 (5)
C20.24777 (19)0.31447 (11)0.20978 (11)0.0202 (5)
C30.18745 (19)0.27192 (12)0.16559 (11)0.0240 (5)
H30.13150.24270.18360.029*
C40.2087 (2)0.27206 (12)0.09597 (11)0.0266 (5)
H40.16770.24270.06620.032*
C50.2895 (2)0.31492 (12)0.06947 (11)0.0281 (5)
H50.30340.31500.02140.034*
C60.3509 (2)0.35797 (12)0.11232 (12)0.0254 (5)
C70.4367 (2)0.40532 (15)0.08186 (13)0.0377 (7)
H7A0.44390.39580.03260.057*
H7B0.50760.39730.10460.057*
H7C0.41440.45360.08860.057*
C80.40022 (19)0.40236 (12)0.22961 (11)0.0219 (5)
C90.3708 (2)0.47248 (12)0.23822 (12)0.0254 (5)
C100.4315 (2)0.51559 (13)0.28132 (12)0.0312 (6)
H100.41200.56300.28650.037*
C110.5209 (2)0.48849 (15)0.31650 (13)0.0337 (6)
H110.56070.51710.34760.040*
C120.5531 (2)0.42038 (14)0.30702 (12)0.0299 (6)
H120.61560.40290.33070.036*
C130.4937 (2)0.37708 (13)0.26256 (12)0.0256 (5)
C140.5321 (2)0.30421 (14)0.25033 (14)0.0344 (6)
H14A0.53690.29560.20080.052*
H14B0.47970.27170.27100.052*
H14C0.60480.29780.27120.052*
C150.19212 (19)0.37112 (11)0.31069 (11)0.0207 (5)
H150.19050.41280.28480.025*
C160.16427 (19)0.37189 (11)0.38074 (11)0.0206 (5)
C170.1300 (2)0.42506 (12)0.42513 (12)0.0244 (5)
H170.11920.47250.41390.029*
C180.1151 (2)0.39398 (12)0.48859 (12)0.0259 (5)
H180.09270.41610.52990.031*
C190.1395 (2)0.32343 (12)0.48011 (11)0.0230 (5)
H190.13510.28980.51570.028*
C200.2464 (3)0.56310 (14)0.20580 (17)0.0485 (8)
H20A0.30630.59280.18920.073*
H20B0.22910.57510.25360.073*
H20C0.18100.57010.17710.073*
C210.1974 (2)0.04326 (11)0.47941 (11)0.0210 (5)
C220.2066 (2)0.11598 (11)0.47583 (10)0.0210 (4)
C230.2746 (2)0.15131 (12)0.52159 (11)0.0243 (5)
H230.28090.20030.51850.029*
C240.3332 (2)0.11615 (13)0.57141 (12)0.0280 (5)
H240.38000.14050.60220.034*
C250.3227 (2)0.04441 (13)0.57602 (12)0.0282 (5)
H250.36230.02010.61060.034*
C260.2560 (2)0.00801 (12)0.53132 (12)0.0250 (5)
C270.2482 (2)0.07008 (13)0.53692 (14)0.0338 (6)
H27A0.28790.08570.57800.051*
H27B0.28090.09140.49600.051*
H27C0.17060.08380.54040.051*
C280.1304 (2)0.00239 (11)0.42885 (12)0.0222 (5)
C290.0185 (2)0.01111 (12)0.44244 (13)0.0275 (5)
C300.0460 (2)0.04779 (14)0.39565 (15)0.0367 (6)
H300.12210.05540.40440.044*
C310.0019 (2)0.07291 (13)0.33646 (15)0.0399 (7)
H310.04190.09730.30400.048*
C320.1125 (2)0.06315 (13)0.32358 (13)0.0343 (6)
H320.14440.08200.28310.041*
C330.1780 (2)0.02576 (12)0.36964 (12)0.0260 (5)
C340.2985 (2)0.01619 (13)0.35456 (13)0.0336 (6)
H34A0.30870.02550.32650.050*
H34B0.32620.05670.32950.050*
H34C0.33900.01110.39780.050*
C350.0396 (2)0.15476 (11)0.42837 (11)0.0209 (5)
H350.00350.12840.46300.025*
C360.02257 (19)0.19223 (11)0.38036 (11)0.0204 (5)
C370.1364 (2)0.20096 (12)0.37040 (12)0.0260 (5)
H370.19400.18230.39780.031*
C380.1474 (2)0.24234 (12)0.31248 (13)0.0293 (6)
H380.21450.25720.29210.035*
C390.0406 (2)0.25794 (12)0.28985 (12)0.0246 (5)
H390.02420.28610.25110.030*
C400.1352 (2)0.01588 (17)0.51440 (18)0.0470 (8)
H40A0.16490.03130.51450.071*
H40B0.16940.04250.47720.071*
H40C0.15130.03820.55860.071*
C410.1426 (2)0.10869 (12)0.25604 (12)0.0282 (5)
H41A0.17420.06290.24690.042*
H41B0.10840.12670.21400.042*
H41C0.08680.10490.29230.042*
C420.3251 (2)0.14854 (13)0.23374 (12)0.0296 (6)
H42A0.30230.15370.18570.044*
H42B0.35800.10260.24040.044*
H42C0.37950.18430.24510.044*
C430.4299 (2)0.16340 (14)0.38204 (13)0.0299 (5)
H43A0.44610.15350.43040.045*
H43B0.49870.17230.35730.045*
H43C0.39240.12350.36140.045*
C440.4124 (2)0.28268 (14)0.41150 (12)0.0299 (5)
H44A0.48810.28720.39460.045*
H44B0.41350.27490.46130.045*
H44C0.37140.32520.40140.045*
C450.4571 (3)0.6708 (2)0.42065 (18)0.0586 (9)
H45A0.47670.63230.39020.088*
H45B0.46390.65600.46870.088*
H45C0.50680.70990.41220.088*
C460.3405 (3)0.69278 (16)0.40673 (14)0.0414 (7)
C470.3080 (3)0.76147 (15)0.41459 (14)0.0500 (9)
H470.36120.79550.42650.060*
C480.1999 (4)0.78084 (19)0.40534 (15)0.0605 (10)
H480.17900.82780.41210.073*
C490.1226 (4)0.7331 (2)0.38658 (16)0.0679 (12)
H490.04810.74680.38010.081*
C500.1529 (3)0.6649 (2)0.37704 (15)0.0554 (9)
H500.09940.63170.36320.066*
C510.2618 (3)0.64452 (15)0.38760 (13)0.0405 (7)
H510.28210.59740.38160.049*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
V10.01700 (19)0.01853 (17)0.01684 (16)0.00097 (15)0.00101 (15)0.00021 (15)
O10.0339 (10)0.0216 (8)0.0346 (9)0.0034 (8)0.0082 (8)0.0014 (7)
O20.0197 (10)0.0331 (10)0.0427 (10)0.0006 (7)0.0072 (7)0.0081 (8)
N10.0183 (10)0.0209 (9)0.0177 (8)0.0000 (8)0.0006 (8)0.0014 (7)
N20.0185 (10)0.0211 (9)0.0211 (9)0.0002 (7)0.0003 (7)0.0021 (7)
N30.0206 (11)0.0182 (9)0.0193 (9)0.0012 (7)0.0013 (8)0.0000 (7)
N40.0191 (10)0.0201 (9)0.0224 (9)0.0004 (8)0.0025 (7)0.0012 (7)
N50.0231 (11)0.0230 (9)0.0215 (9)0.0024 (8)0.0013 (8)0.0005 (7)
N60.0208 (11)0.0253 (10)0.0220 (9)0.0016 (9)0.0018 (7)0.0004 (8)
C10.0183 (12)0.0229 (12)0.0223 (11)0.0023 (9)0.0002 (9)0.0012 (8)
C20.0197 (12)0.0205 (11)0.0203 (11)0.0037 (8)0.0022 (8)0.0010 (8)
C30.0236 (13)0.0237 (11)0.0247 (11)0.0000 (10)0.0026 (9)0.0017 (9)
C40.0292 (13)0.0275 (11)0.0230 (10)0.0004 (11)0.0045 (10)0.0032 (9)
C50.0320 (14)0.0339 (13)0.0185 (10)0.0016 (11)0.0014 (10)0.0009 (9)
C60.0250 (14)0.0279 (13)0.0234 (11)0.0006 (10)0.0001 (10)0.0006 (9)
C70.0409 (18)0.0458 (16)0.0264 (13)0.0114 (13)0.0071 (12)0.0026 (11)
C80.0208 (13)0.0250 (12)0.0200 (11)0.0042 (9)0.0009 (9)0.0021 (8)
C90.0253 (13)0.0275 (12)0.0234 (11)0.0045 (10)0.0006 (10)0.0027 (9)
C100.0361 (16)0.0277 (13)0.0297 (13)0.0089 (11)0.0026 (11)0.0015 (10)
C110.0346 (16)0.0416 (15)0.0248 (12)0.0166 (12)0.0001 (11)0.0012 (11)
C120.0210 (14)0.0438 (15)0.0250 (12)0.0105 (11)0.0023 (10)0.0065 (10)
C130.0206 (13)0.0336 (13)0.0225 (11)0.0055 (10)0.0019 (9)0.0046 (9)
C140.0246 (14)0.0375 (14)0.0411 (15)0.0021 (11)0.0049 (11)0.0033 (11)
C150.0165 (13)0.0211 (11)0.0244 (11)0.0005 (9)0.0017 (9)0.0026 (9)
C160.0160 (12)0.0211 (11)0.0246 (11)0.0011 (9)0.0004 (9)0.0008 (9)
C170.0197 (13)0.0225 (11)0.0312 (12)0.0020 (9)0.0034 (10)0.0027 (9)
C180.0215 (13)0.0292 (12)0.0269 (12)0.0043 (10)0.0062 (10)0.0095 (9)
C190.0199 (13)0.0282 (12)0.0208 (11)0.0040 (9)0.0024 (9)0.0003 (9)
C200.059 (2)0.0257 (14)0.0605 (19)0.0089 (13)0.0165 (16)0.0023 (13)
C210.0185 (13)0.0227 (11)0.0218 (11)0.0016 (9)0.0031 (9)0.0013 (8)
C220.0200 (12)0.0249 (11)0.0181 (10)0.0017 (10)0.0034 (9)0.0023 (8)
C230.0266 (14)0.0246 (12)0.0217 (11)0.0012 (10)0.0002 (9)0.0012 (9)
C240.0281 (14)0.0327 (13)0.0231 (11)0.0009 (10)0.0038 (10)0.0034 (10)
C250.0264 (14)0.0349 (14)0.0232 (11)0.0055 (10)0.0029 (10)0.0048 (9)
C260.0245 (13)0.0274 (12)0.0232 (11)0.0042 (9)0.0033 (9)0.0041 (9)
C270.0400 (16)0.0264 (13)0.0351 (13)0.0034 (11)0.0049 (11)0.0079 (10)
C280.0216 (13)0.0184 (11)0.0265 (11)0.0002 (9)0.0029 (9)0.0041 (8)
C290.0245 (14)0.0206 (12)0.0374 (13)0.0004 (10)0.0023 (10)0.0068 (10)
C300.0276 (16)0.0284 (14)0.0541 (17)0.0057 (11)0.0124 (13)0.0081 (12)
C310.0474 (18)0.0238 (13)0.0485 (17)0.0047 (12)0.0235 (14)0.0006 (11)
C320.0481 (19)0.0233 (13)0.0315 (13)0.0009 (12)0.0092 (12)0.0013 (10)
C330.0312 (15)0.0193 (11)0.0276 (11)0.0040 (9)0.0035 (9)0.0028 (9)
C340.0342 (15)0.0367 (13)0.0299 (12)0.0047 (12)0.0054 (12)0.0028 (10)
C350.0210 (13)0.0186 (11)0.0232 (11)0.0018 (9)0.0030 (9)0.0024 (8)
C360.0198 (13)0.0184 (11)0.0231 (11)0.0001 (9)0.0001 (9)0.0032 (8)
C370.0184 (13)0.0236 (12)0.0358 (13)0.0000 (9)0.0031 (10)0.0059 (9)
C380.0193 (14)0.0313 (14)0.0373 (13)0.0061 (10)0.0077 (10)0.0047 (10)
C390.0256 (14)0.0244 (12)0.0240 (11)0.0031 (9)0.0047 (10)0.0008 (9)
C400.0236 (16)0.0528 (18)0.065 (2)0.0028 (13)0.0131 (14)0.0157 (15)
C410.0333 (15)0.0236 (12)0.0276 (12)0.0003 (10)0.0036 (11)0.0047 (9)
C420.0318 (15)0.0331 (13)0.0238 (11)0.0071 (11)0.0020 (10)0.0031 (10)
C430.0219 (14)0.0377 (14)0.0301 (13)0.0064 (11)0.0029 (10)0.0028 (10)
C440.0223 (13)0.0367 (14)0.0306 (12)0.0051 (11)0.0037 (10)0.0051 (11)
C450.043 (2)0.074 (2)0.058 (2)0.0005 (17)0.0117 (16)0.0063 (17)
C460.0487 (19)0.0467 (17)0.0287 (14)0.0052 (14)0.0112 (13)0.0031 (11)
C470.080 (3)0.0380 (17)0.0320 (14)0.0026 (16)0.0139 (15)0.0080 (11)
C480.095 (3)0.051 (2)0.0358 (15)0.031 (2)0.0007 (18)0.0118 (14)
C490.074 (3)0.099 (3)0.0309 (16)0.045 (3)0.0140 (16)0.0013 (18)
C500.055 (2)0.078 (2)0.0326 (15)0.0082 (19)0.0114 (14)0.0125 (15)
C510.053 (2)0.0414 (16)0.0269 (13)0.0078 (13)0.0004 (12)0.0056 (11)
Geometric parameters (Å, º) top
V1—N61.8963 (19)C22—C231.393 (3)
V1—N51.8993 (19)C23—C241.380 (3)
V1—N32.1471 (18)C23—H230.9500
V1—N12.1487 (17)C24—C251.393 (4)
V1—N42.1491 (19)C24—H240.9500
V1—N22.1678 (18)C25—C261.381 (4)
O1—C91.367 (3)C25—H250.9500
O1—C201.420 (3)C26—C271.514 (4)
O2—C291.368 (3)C27—H27A0.9800
O2—C401.428 (3)C27—H27B0.9800
N1—C151.306 (3)C27—H27C0.9800
N1—C21.430 (3)C28—C331.398 (3)
N2—C191.339 (3)C28—C291.409 (4)
N2—C161.379 (3)C29—C301.394 (4)
N3—C351.309 (3)C30—C311.378 (4)
N3—C221.439 (3)C30—H300.9500
N4—C391.344 (3)C31—C321.378 (4)
N4—C361.387 (3)C31—H310.9500
N5—C421.454 (3)C32—C331.398 (3)
N5—C411.461 (3)C32—H320.9500
N6—C431.455 (3)C33—C341.503 (4)
N6—C441.462 (3)C34—H34A0.9800
C1—C61.404 (3)C34—H34B0.9800
C1—C21.406 (3)C34—H34C0.9800
C1—C81.503 (3)C35—C361.401 (3)
C2—C31.396 (3)C35—H350.9500
C3—C41.378 (3)C36—C371.405 (3)
C3—H30.9500C37—C381.387 (4)
C4—C51.383 (4)C37—H370.9500
C4—H40.9500C38—C391.403 (4)
C5—C61.393 (3)C38—H380.9500
C5—H50.9500C39—H390.9500
C6—C71.507 (4)C40—H40A0.9800
C7—H7A0.9800C40—H40B0.9800
C7—H7B0.9800C40—H40C0.9800
C7—H7C0.9800C41—H41A0.9800
C8—C131.391 (3)C41—H41B0.9800
C8—C91.410 (3)C41—H41C0.9800
C9—C101.392 (3)C42—H42A0.9800
C10—C111.385 (4)C42—H42B0.9800
C10—H100.9500C42—H42C0.9800
C11—C121.384 (4)C43—H43A0.9800
C11—H110.9500C43—H43B0.9800
C12—C131.402 (3)C43—H43C0.9800
C12—H120.9500C44—H44A0.9800
C13—C141.501 (4)C44—H44B0.9800
C14—H14A0.9800C44—H44C0.9800
C14—H14B0.9800C45—C461.503 (5)
C14—H14C0.9800C45—H45A0.9800
C15—C161.404 (3)C45—H45B0.9800
C15—H150.9500C45—H45C0.9800
C16—C171.404 (3)C46—C511.385 (4)
C17—C181.384 (3)C46—C471.391 (4)
C17—H170.9500C47—C481.376 (6)
C18—C191.403 (3)C47—H470.9500
C18—H180.9500C48—C491.365 (6)
C19—H190.9500C48—H480.9500
C20—H20A0.9800C49—C501.380 (5)
C20—H20B0.9800C49—H490.9500
C20—H20C0.9800C50—C511.395 (5)
C21—C221.410 (3)C50—H500.9500
C21—C261.410 (3)C51—H510.9500
C21—C281.500 (3)
N6—V1—N595.67 (8)C24—C23—H23119.6
N6—V1—N397.00 (8)C22—C23—H23119.6
N5—V1—N396.95 (8)C23—C24—C25119.2 (2)
N6—V1—N197.53 (8)C23—C24—H24120.4
N5—V1—N196.88 (7)C25—C24—H24120.4
N3—V1—N1158.81 (7)C26—C25—C24121.2 (2)
N6—V1—N4171.07 (7)C26—C25—H25119.4
N5—V1—N491.89 (8)C24—C25—H25119.4
N3—V1—N477.32 (7)C25—C26—C21120.1 (2)
N1—V1—N486.25 (7)C25—C26—C27119.9 (2)
N6—V1—N291.71 (8)C21—C26—C27120.0 (2)
N5—V1—N2170.87 (8)C26—C27—H27A109.5
N3—V1—N287.47 (7)C26—C27—H27B109.5
N1—V1—N276.76 (7)H27A—C27—H27B109.5
N4—V1—N281.24 (7)C26—C27—H27C109.5
C9—O1—C20118.5 (2)H27A—C27—H27C109.5
C29—O2—C40117.5 (2)H27B—C27—H27C109.5
C15—N1—C2117.97 (18)C33—C28—C29118.7 (2)
C15—N1—V1114.06 (14)C33—C28—C21121.4 (2)
C2—N1—V1127.87 (14)C29—C28—C21119.8 (2)
C19—N2—C16105.80 (18)O2—C29—C30124.3 (2)
C19—N2—V1141.78 (16)O2—C29—C28114.8 (2)
C16—N2—V1112.17 (14)C30—C29—C28120.9 (2)
C35—N3—C22117.48 (19)C31—C30—C29119.1 (3)
C35—N3—V1113.36 (15)C31—C30—H30120.4
C22—N3—V1129.06 (15)C29—C30—H30120.4
C39—N4—C36105.93 (19)C32—C31—C30121.0 (2)
C39—N4—V1141.74 (16)C32—C31—H31119.5
C36—N4—V1112.00 (14)C30—C31—H31119.5
C42—N5—C41109.82 (18)C31—C32—C33120.5 (3)
C42—N5—V1126.13 (16)C31—C32—H32119.7
C41—N5—V1123.56 (15)C33—C32—H32119.7
C43—N6—C44109.4 (2)C28—C33—C32119.6 (2)
C43—N6—V1125.61 (16)C28—C33—C34121.0 (2)
C44—N6—V1124.06 (16)C32—C33—C34119.4 (2)
C6—C1—C2119.0 (2)C33—C34—H34A109.5
C6—C1—C8119.4 (2)C33—C34—H34B109.5
C2—C1—C8121.59 (19)H34A—C34—H34B109.5
C3—C2—C1120.0 (2)C33—C34—H34C109.5
C3—C2—N1117.6 (2)H34A—C34—H34C109.5
C1—C2—N1122.31 (19)H34B—C34—H34C109.5
C4—C3—C2120.4 (2)N3—C35—C36120.0 (2)
C4—C3—H3119.8N3—C35—H35120.0
C2—C3—H3119.8C36—C35—H35120.0
C3—C4—C5120.0 (2)N4—C36—C35116.8 (2)
C3—C4—H4120.0N4—C36—C37110.1 (2)
C5—C4—H4120.0C35—C36—C37133.1 (2)
C4—C5—C6120.9 (2)C38—C37—C36106.0 (2)
C4—C5—H5119.6C38—C37—H37127.0
C6—C5—H5119.6C36—C37—H37127.0
C5—C6—C1119.7 (2)C37—C38—C39106.8 (2)
C5—C6—C7119.8 (2)C37—C38—H38126.6
C1—C6—C7120.6 (2)C39—C38—H38126.6
C6—C7—H7A109.5N4—C39—C38111.1 (2)
C6—C7—H7B109.5N4—C39—H39124.4
H7A—C7—H7B109.5C38—C39—H39124.4
C6—C7—H7C109.5O2—C40—H40A109.5
H7A—C7—H7C109.5O2—C40—H40B109.5
H7B—C7—H7C109.5H40A—C40—H40B109.5
C13—C8—C9119.2 (2)O2—C40—H40C109.5
C13—C8—C1122.0 (2)H40A—C40—H40C109.5
C9—C8—C1118.8 (2)H40B—C40—H40C109.5
O1—C9—C10124.6 (2)N5—C41—H41A109.5
O1—C9—C8114.7 (2)N5—C41—H41B109.5
C10—C9—C8120.7 (2)H41A—C41—H41B109.5
C11—C10—C9119.1 (2)N5—C41—H41C109.5
C11—C10—H10120.4H41A—C41—H41C109.5
C9—C10—H10120.4H41B—C41—H41C109.5
C12—C11—C10120.9 (2)N5—C42—H42A109.5
C12—C11—H11119.5N5—C42—H42B109.5
C10—C11—H11119.5H42A—C42—H42B109.5
C11—C12—C13120.2 (2)N5—C42—H42C109.5
C11—C12—H12119.9H42A—C42—H42C109.5
C13—C12—H12119.9H42B—C42—H42C109.5
C8—C13—C12119.7 (2)N6—C43—H43A109.5
C8—C13—C14120.6 (2)N6—C43—H43B109.5
C12—C13—C14119.7 (2)H43A—C43—H43B109.5
C13—C14—H14A109.5N6—C43—H43C109.5
C13—C14—H14B109.5H43A—C43—H43C109.5
H14A—C14—H14B109.5H43B—C43—H43C109.5
C13—C14—H14C109.5N6—C44—H44A109.5
H14A—C14—H14C109.5N6—C44—H44B109.5
H14B—C14—H14C109.5H44A—C44—H44B109.5
N1—C15—C16119.8 (2)N6—C44—H44C109.5
N1—C15—H15120.1H44A—C44—H44C109.5
C16—C15—H15120.1H44B—C44—H44C109.5
N2—C16—C15116.9 (2)C46—C45—H45A109.5
N2—C16—C17110.55 (19)C46—C45—H45B109.5
C15—C16—C17132.5 (2)H45A—C45—H45B109.5
C18—C17—C16105.7 (2)C46—C45—H45C109.5
C18—C17—H17127.2H45A—C45—H45C109.5
C16—C17—H17127.2H45B—C45—H45C109.5
C17—C18—C19106.7 (2)C51—C46—C47118.4 (3)
C17—C18—H18126.6C51—C46—C45120.6 (3)
C19—C18—H18126.6C47—C46—C45121.0 (3)
N2—C19—C18111.2 (2)C48—C47—C46121.0 (3)
N2—C19—H19124.4C48—C47—H47119.5
C18—C19—H19124.4C46—C47—H47119.5
O1—C20—H20A109.5C49—C48—C47120.5 (3)
O1—C20—H20B109.5C49—C48—H48119.7
H20A—C20—H20B109.5C47—C48—H48119.7
O1—C20—H20C109.5C48—C49—C50119.7 (4)
H20A—C20—H20C109.5C48—C49—H49120.1
H20B—C20—H20C109.5C50—C49—H49120.1
C22—C21—C26118.4 (2)C49—C50—C51120.1 (4)
C22—C21—C28122.3 (2)C49—C50—H50119.9
C26—C21—C28119.28 (19)C51—C50—H50119.9
C23—C22—C21120.2 (2)C46—C51—C50120.2 (3)
C23—C22—N3117.90 (19)C46—C51—H51119.9
C21—C22—N3121.9 (2)C50—C51—H51119.9
C24—C23—C22120.9 (2)
N6—V1—N5—C4237.95 (19)C16—C17—C18—C190.7 (3)
N3—V1—N5—C42135.74 (18)C16—N2—C19—C180.6 (3)
N1—V1—N5—C4260.36 (19)V1—N2—C19—C18173.84 (19)
N4—V1—N5—C42146.81 (18)C17—C18—C19—N20.8 (3)
N6—V1—N5—C41150.91 (18)C26—C21—C22—C231.8 (3)
N3—V1—N5—C4153.12 (18)C28—C21—C22—C23176.4 (2)
N1—V1—N5—C41110.78 (18)C26—C21—C22—N3178.3 (2)
N4—V1—N5—C4124.33 (18)C28—C21—C22—N33.5 (3)
N5—V1—N6—C4337.05 (19)C35—N3—C22—C23117.3 (2)
N3—V1—N6—C4360.69 (18)V1—N3—C22—C2358.9 (3)
N1—V1—N6—C43134.78 (18)C35—N3—C22—C2162.8 (3)
N2—V1—N6—C43148.34 (18)V1—N3—C22—C21121.0 (2)
N5—V1—N6—C44154.99 (17)C21—C22—C23—C240.6 (4)
N3—V1—N6—C44107.27 (18)N3—C22—C23—C24179.5 (2)
N1—V1—N6—C4457.26 (18)C22—C23—C24—C250.6 (4)
N2—V1—N6—C4419.62 (18)C23—C24—C25—C260.7 (4)
C6—C1—C2—C31.1 (3)C24—C25—C26—C210.5 (4)
C8—C1—C2—C3177.9 (2)C24—C25—C26—C27178.8 (2)
C6—C1—C2—N1177.9 (2)C22—C21—C26—C251.7 (3)
C8—C1—C2—N13.0 (3)C28—C21—C26—C25176.5 (2)
C15—N1—C2—C3122.5 (2)C22—C21—C26—C27179.9 (2)
V1—N1—C2—C353.7 (3)C28—C21—C26—C271.8 (3)
C15—N1—C2—C156.5 (3)C22—C21—C28—C3392.8 (3)
V1—N1—C2—C1127.2 (2)C26—C21—C28—C3385.4 (3)
C1—C2—C3—C40.3 (3)C22—C21—C28—C2990.3 (3)
N1—C2—C3—C4178.8 (2)C26—C21—C28—C2991.5 (3)
C2—C3—C4—C50.5 (4)C40—O2—C29—C3015.1 (3)
C3—C4—C5—C60.4 (4)C40—O2—C29—C28165.9 (2)
C4—C5—C6—C10.4 (4)C33—C28—C29—O2174.7 (2)
C4—C5—C6—C7178.6 (2)C21—C28—C29—O22.2 (3)
C2—C1—C6—C51.2 (4)C33—C28—C29—C304.3 (3)
C8—C1—C6—C5177.9 (2)C21—C28—C29—C30178.7 (2)
C2—C1—C6—C7177.9 (2)O2—C29—C30—C31176.9 (2)
C8—C1—C6—C73.1 (4)C28—C29—C30—C312.1 (4)
C6—C1—C8—C1394.4 (3)C29—C30—C31—C321.0 (4)
C2—C1—C8—C1384.7 (3)C30—C31—C32—C331.7 (4)
C6—C1—C8—C984.0 (3)C29—C28—C33—C323.5 (3)
C2—C1—C8—C997.0 (3)C21—C28—C33—C32179.6 (2)
C20—O1—C9—C103.2 (4)C29—C28—C33—C34176.7 (2)
C20—O1—C9—C8177.7 (2)C21—C28—C33—C340.2 (3)
C13—C8—C9—O1178.2 (2)C31—C32—C33—C280.6 (4)
C1—C8—C9—O10.2 (3)C31—C32—C33—C34179.7 (2)
C13—C8—C9—C102.6 (3)C22—N3—C35—C36179.39 (19)
C1—C8—C9—C10179.0 (2)V1—N3—C35—C363.8 (3)
O1—C9—C10—C11178.3 (2)C39—N4—C36—C35178.62 (19)
C8—C9—C10—C110.8 (4)V1—N4—C36—C356.5 (2)
C9—C10—C11—C122.8 (4)C39—N4—C36—C370.0 (2)
C10—C11—C12—C131.5 (4)V1—N4—C36—C37174.89 (15)
C9—C8—C13—C123.9 (3)N3—C35—C36—N41.9 (3)
C1—C8—C13—C12177.8 (2)N3—C35—C36—C37179.9 (2)
C9—C8—C13—C14175.4 (2)N4—C36—C37—C380.5 (3)
C1—C8—C13—C142.9 (3)C35—C36—C37—C38177.9 (2)
C11—C12—C13—C81.9 (3)C36—C37—C38—C390.7 (3)
C11—C12—C13—C14177.4 (2)C36—N4—C39—C380.4 (3)
C2—N1—C15—C16179.8 (2)V1—N4—C39—C38172.80 (18)
V1—N1—C15—C163.1 (3)C37—C38—C39—N40.7 (3)
C19—N2—C16—C15179.7 (2)C51—C46—C47—C481.6 (4)
V1—N2—C16—C154.2 (2)C45—C46—C47—C48176.5 (3)
C19—N2—C16—C170.1 (3)C46—C47—C48—C491.6 (4)
V1—N2—C16—C17175.62 (16)C47—C48—C49—C500.2 (5)
N1—C15—C16—N20.8 (3)C48—C49—C50—C511.0 (5)
N1—C15—C16—C17179.0 (2)C47—C46—C51—C500.4 (4)
N2—C16—C17—C180.4 (3)C45—C46—C51—C50177.8 (3)
C15—C16—C17—C18179.8 (2)C49—C50—C51—C460.9 (5)
 

Acknowledgements

We thank Professor Guofu Zi for providing the Schiff base ligand and for helpful discussions.

References

First citationParsons, S., Flack, H. D. & Wagner, T. (2013). Acta Cryst. B69, 249–259.  Web of Science CrossRef CAS IUCr Journals Google Scholar
First citationRigaku (2009). CrystalClear-SM Expert. Rigaku Corporation, Tokyo, Japan.  Google Scholar
First citationRigaku (2010). CrystalStructure. Rigaku Corporation, Tokyo, Japan.  Google Scholar
First citationSheldrick, G. M. (2008). Acta Cryst. A64, 112–122.  Web of Science CrossRef CAS IUCr Journals Google Scholar
First citationSheldrick, G. M. (2015). Acta Cryst. A71, 3–8.  Web of Science CrossRef IUCr Journals Google Scholar
First citationWestrip, S. P. (2010). J. Appl. Cryst. 43, 920–925.  Web of Science CrossRef CAS IUCr Journals Google Scholar
First citationZi, G., Wang, Q., Xiang, L. & Song, H. (2008). Dalton Trans. pp. 5930–5944.  Web of Science CSD CrossRef Google Scholar

This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.

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