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

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ISSN: 2056-9890

Crystal structure of bis­­{1-[(E)-(2-meth­­oxy­phen­yl)diazen­yl]naphthalen-2-olato-κ3O,N2,O′}copper(II) containing an unknown solvate

aUnité de Recherche de Chimie de l'Environnement et Moléculaire Structurale (CHEMS), Faculté des Sciences Exactes, Département de Chimie, Université Constantine 1, Constantine 25000, Algeria, and bLaboratoire de Cristallographie, Département de Physique, Université Constantine 1, Constantine 25000, Algeria
*Correspondence e-mail: souheilachetioui@yahoo.fr

Edited by A. M. Chippindale, University of Reading, England (Received 20 September 2015; accepted 20 October 2015; online 31 October 2015)

The title complex, [Cu(C17H13N2O2)2], crystallizes with two independent mol­ecules in the asymmetric unit. Each CuII atom has a distorted ocahedral coordination environment defined by two N atoms and four O atoms from two tridentate 1-[(E)-(2-meth­oxy­phen­yl)diazen­yl]naphthalen-2-olate ligands. In the crystal, the two mol­ecules are linked via weak C—H⋯O hydrogen bonds which in turn stack parallel to [010]. A region of disordered electron density, most probably disordered methanol solvent molecules, was corrected for using the SQUEEZE routine in PLATON [Spek (2015). Acta Cryst. C71, 9–18]. Their formula mass and unit-cell characteristics were not taken into account during refinement.

1. Related literature

For applications of azo compounds, see: Millington et al. (2007[Millington, K. R., Fincher, K. W. & King, A. L. (2007). Solar Energy Mater. Solar Cells, 91, 1618-1630.]); Hallas & Choi (1999[Hallas, G. & Choi, J. H. (1999). Dyes Pigm. 40, 119-129.]); Ho et al. (1995[Ho, M. S., Natansohn, A. & Rochon, P. (1995). Macromolecules, 28, 6124-6127.]); Sharma et al. (2008[Sharma, G. D., Suresh, P., Sharma, S. K. & Roy, M. S. (2008). Synth. Met. 158, 509-515.]). For related structures, see: Tai et al. (2010[Tai, W.-J., Li, C.-H., Li, C.-Y. & Ko, B.-T. (2010). Acta Cryst. E66, m1315.]); Lin et al. (2010[Lin, M.-L., Tsai, C.-Y., Li, C.-Y., Huang, B.-H. & Ko, B.-T. (2010). Acta Cryst. E66, m1022.]).

[Scheme 1]

2. Experimental

2.1. Crystal data

  • [Cu(C17H13N2O2)2]

  • Mr = 618.13

  • Monoclinic P 21 /c

  • a = 29.749 (2) Å

  • b = 12.5171 (9) Å

  • c = 15.3565 (12) Å

  • β = 92.969 (5)°

  • V = 5710.7 (8) Å3

  • Z = 8

  • Mo Kα radiation

  • μ = 0.81 mm−1

  • T = 100 K

  • 0.02 × 0.01 × 0.01 mm

2.2. Data collection

  • Bruker APEXII diffractometer

  • 76488 measured reflections

  • 20125 independent reflections

  • 9009 reflections with I > 2σ(I)

  • Rint = 0.122

2.3. Refinement

  • R[F2 > 2σ(F2)] = 0.074

  • wR(F2) = 0.168

  • S = 1.01

  • 20125 reflections

  • 775 parameters

  • H-atom parameters constrained

  • Δρmax = 0.55 e Å−3

  • Δρmin = −1.01 e Å−3

Table 1
Hydrogen-bond geometry (Å, °)

D—H⋯A D—H H⋯A DA D—H⋯A
C3B—H3B⋯O4A 0.93 2.48 3.270 (5) 143

Data collection: APEX2 (Bruker, 2006[Bruker (2006). APEX2 and SAINT. Bruker AXS Inc., Madison, Wisconsin, USA.]); cell refinement: APEX2; data reduction: APEX2; program(s) used to solve structure: SIR92 (Giacovazzo et al., 1992[Giacovazzo, C., Burla, M. C. & Cascarano, G. (1992). Acta Cryst. A48, 901-906.]); program(s) used to refine structure: SHELXL2014 (Sheldrick, 2015[Sheldrick, G. M. (2015). Acta Cryst. C71, 3-8.]); molecular graphics: ORTEP-3 for Windows (Farrugia, 2012[Farrugia, L. J. (2012). J. Appl. Cryst. 45, 849-854.]); software used to prepare material for publication: WinGX (Farrugia, 2012[Farrugia, L. J. (2012). J. Appl. Cryst. 45, 849-854.]) and SQUEEZE in PLATON (Spek, 2015[Spek, A. L. (2015). Acta Cryst. C71, 9-18.]).

Supporting information


Comment top

Azo compounds are highly colored and commonly utilized in textile industries (Millington et al., 2007; Hallas & Choi, 1999), optical data storage (Ho et al.,1995) and as sensitizers in dye-sensitized solar cells (DSSCs)(Sharma et al.,2008). In previous work, the chelating ligand, (E)-1-(o-tolyldiazenyl)naphthalen-2-ol, has been used to form complexes on reaction with Cu(OAc)2·H2O (Tai et al., 2010) and Pd(OAc)2 (Lin et al., 2010). Herein, we report the synthesis and crystal structure of a novel copper(II) complex formed on reaction of a similar azoic ligand, (E)-1-((2-methoxyphenyl)diazenyl)naphthalen-2-ol (C17H14N2O2), with Cu(OAc)2·H2O.

The molecular structure of the title compound is shown in Figure 1. There are two independent molecules (A and B) in the asymmetric unit, each consisting of a CuII atom coordinated by two N atoms and four O atoms from two tridentate (E)-1-((2-methoxyphenyl)diazenyl)naphthalen-2-ol ligands. The octahedral geometry formed around the CuII atom (Table 1) is distorted from the ideal due to the Jahn-Teller effect.

Within each molecule, there are C—H···N interactions (Table 1). In the crystal, the two independent molecules are linked via weak C—H····O hydrogen bonds (Table 1). These pairs of molecules then stack to form bi-dimensional molecular chains running parallel to [010], as shown in Figure 2.

Related literature top

For applications of azo compounds, see: Millington et al. (2007); Hallas & Choi (1999); Ho et al.(1995); Sharma et al. (2008). For related structures, see: Tai et al. (2010); Lin et al. (2010).

Experimental top

The title compound (I) was synthesized by the following procedure: (E)-1-((2-methoxyphenyl)diazenyl)naphthalen-2-ol (0.55 g, 2.0 mmol) and Cu(OAc)2·H2O (0.20 g, 1.0 mmol) were stirred at 298 K in methanol (10 ml) for 48 h. Volatile materials were removed under vacuum and the residue was washed twice with CH2Cl2/hexane (1:5) solution to give a dark solid. Black crystals of the title compound were formed on recrystallization in CH2Cl2.

Refinement top

The H atoms were placed in idealized positions and constrained to ride on their parent atoms,with C–H = 0.93 Å with Uiso(H) = 1.2Ueq(C) for aromatic hydrogen; C–H = 0.96 Å with Uiso(H) = 1.5Ueq(C) for CH3-group. The SQUEEZE alogorithm was used (as implemented in PLATON) (Spek, 2015) to correct for the residual electron density between the metal complexes corresponding to disordered methanol.

Structure description top

Azo compounds are highly colored and commonly utilized in textile industries (Millington et al., 2007; Hallas & Choi, 1999), optical data storage (Ho et al.,1995) and as sensitizers in dye-sensitized solar cells (DSSCs)(Sharma et al.,2008). In previous work, the chelating ligand, (E)-1-(o-tolyldiazenyl)naphthalen-2-ol, has been used to form complexes on reaction with Cu(OAc)2·H2O (Tai et al., 2010) and Pd(OAc)2 (Lin et al., 2010). Herein, we report the synthesis and crystal structure of a novel copper(II) complex formed on reaction of a similar azoic ligand, (E)-1-((2-methoxyphenyl)diazenyl)naphthalen-2-ol (C17H14N2O2), with Cu(OAc)2·H2O.

The molecular structure of the title compound is shown in Figure 1. There are two independent molecules (A and B) in the asymmetric unit, each consisting of a CuII atom coordinated by two N atoms and four O atoms from two tridentate (E)-1-((2-methoxyphenyl)diazenyl)naphthalen-2-ol ligands. The octahedral geometry formed around the CuII atom (Table 1) is distorted from the ideal due to the Jahn-Teller effect.

Within each molecule, there are C—H···N interactions (Table 1). In the crystal, the two independent molecules are linked via weak C—H····O hydrogen bonds (Table 1). These pairs of molecules then stack to form bi-dimensional molecular chains running parallel to [010], as shown in Figure 2.

For applications of azo compounds, see: Millington et al. (2007); Hallas & Choi (1999); Ho et al.(1995); Sharma et al. (2008). For related structures, see: Tai et al. (2010); Lin et al. (2010).

Computing details top

Data collection: APEX2 (Bruker, 2006); cell refinement: APEX2 (Bruker, 2006); data reduction: APEX2 (Bruker, 2006); program(s) used to solve structure: SIR92 (Giacovazzo et al., 1992); program(s) used to refine structure: SHELXL2014 (Sheldrick, 2015); molecular graphics: ORTEP-3 for Windows (Farrugia, 2012); software used to prepare material for publication: WinGX (Farrugia, 2012) and SQUEEZE in PLATON (Spek, 2015).

Figures top
[Figure 1] Fig. 1. The molecular structure of (I), with displacement ellipsoids for non-H atoms shown at 50% probability.
[Figure 2] Fig. 2. Partial view along the b axis of the crystal packing of the title compound.
Bis{1-[(E)-(2-methoxyphenyl)diazenyl]naphthalen-2-olato-κ3O,N2,O'}copper(II) top
Crystal data top
[Cu(C17H13N2O2)2]F(000) = 2552
Mr = 618.13Dx = 1.438 Mg m3
Monoclinic, P21/cMo Kα radiation, λ = 0.71073 Å
Hall symbol: -P 2ybcCell parameters from 2052 reflections
a = 29.749 (2) Åθ = 3.1–28.6°
b = 12.5171 (9) ŵ = 0.81 mm1
c = 15.3565 (12) ÅT = 100 K
β = 92.969 (5)°Block, black
V = 5710.7 (8) Å30.02 × 0.01 × 0.01 mm
Z = 8
Data collection top
Bruker APEXII
diffractometer
9009 reflections with I > 2σ(I)
Radiation source: fine-focus sealed tubeRint = 0.122
Graphite monochromatorθmax = 32.3°, θmin = 2.2°
CCD rotation images, thin slices ω scansh = 4444
76488 measured reflectionsk = 1618
20125 independent reflectionsl = 2123
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)] = 0.074Hydrogen site location: inferred from neighbouring sites
wR(F2) = 0.168H-atom parameters constrained
S = 1.01 w = 1/[σ2(Fo2) + (0.0532P)2 + 4.1986P]
where P = (Fo2 + 2Fc2)/3
20125 reflections(Δ/σ)max < 0.001
775 parametersΔρmax = 0.55 e Å3
0 restraintsΔρmin = 1.01 e Å3
Crystal data top
[Cu(C17H13N2O2)2]V = 5710.7 (8) Å3
Mr = 618.13Z = 8
Monoclinic, P21/cMo Kα radiation
a = 29.749 (2) ŵ = 0.81 mm1
b = 12.5171 (9) ÅT = 100 K
c = 15.3565 (12) Å0.02 × 0.01 × 0.01 mm
β = 92.969 (5)°
Data collection top
Bruker APEXII
diffractometer
9009 reflections with I > 2σ(I)
76488 measured reflectionsRint = 0.122
20125 independent reflections
Refinement top
R[F2 > 2σ(F2)] = 0.0740 restraints
wR(F2) = 0.168H-atom parameters constrained
S = 1.01Δρmax = 0.55 e Å3
20125 reflectionsΔρmin = 1.01 e Å3
775 parameters
Special details top

Geometry. Bond distances, angles etc. have been calculated using the rounded fractional coordinates. All su's are estimated from the variances of the (full) variance-covariance matrix. The cell e.s.d.'s are taken into account in the estimation of distances, angles and torsion angles

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*/Ueq
Cu1A0.16768 (2)0.07675 (3)0.64956 (3)0.0232 (1)
Cu1B0.39838 (2)0.19075 (3)0.89627 (3)0.0326 (2)
O1A0.16618 (9)0.21278 (19)0.52348 (17)0.0337 (9)
O2A0.20122 (8)0.05309 (18)0.63672 (17)0.0299 (8)
O3A0.10965 (8)0.02672 (19)0.75606 (17)0.0317 (8)
O4A0.21587 (8)0.14849 (18)0.71091 (16)0.0259 (7)
N1A0.12605 (9)0.0277 (2)0.55555 (18)0.0230 (9)
N2A0.11374 (9)0.0690 (2)0.53966 (18)0.0245 (9)
N3A0.12467 (9)0.1701 (2)0.70536 (18)0.0199 (8)
N4A0.13093 (9)0.2621 (2)0.73992 (18)0.0209 (8)
C1A0.10128 (12)0.1064 (3)0.5062 (2)0.0241 (11)
O1B0.33502 (10)0.1213 (2)0.77943 (17)0.0401 (10)
C2A0.12232 (12)0.2030 (3)0.4912 (2)0.0273 (11)
O2B0.42588 (9)0.32864 (19)0.88982 (18)0.0375 (9)
C3A0.09907 (14)0.2836 (3)0.4443 (2)0.0335 (12)
O3B0.41311 (12)0.1922 (2)1.06631 (19)0.0529 (11)
C4A0.05525 (14)0.2654 (3)0.4142 (2)0.0377 (14)
O4B0.44442 (10)0.12394 (19)0.83389 (18)0.0398 (9)
C5A0.03422 (13)0.1695 (3)0.4281 (2)0.0358 (12)
C6A0.05760 (12)0.0891 (3)0.4741 (2)0.0296 (12)
C7A0.13682 (12)0.1512 (3)0.5794 (2)0.0245 (11)
C8A0.17995 (13)0.1418 (3)0.6235 (2)0.0281 (11)
C9A0.20128 (14)0.2385 (3)0.6544 (3)0.0352 (12)
C10A0.18092 (15)0.3349 (3)0.6458 (3)0.0388 (14)
C11A0.13786 (14)0.3473 (3)0.6018 (2)0.0323 (11)
C12A0.11583 (13)0.2555 (3)0.5668 (2)0.0276 (11)
C13A0.07372 (13)0.2685 (3)0.5231 (2)0.0322 (12)
C14A0.05408 (15)0.3673 (3)0.5138 (3)0.0414 (16)
C15A0.07519 (15)0.4576 (3)0.5488 (3)0.0437 (16)
C16A0.11664 (15)0.4483 (3)0.5921 (3)0.0386 (14)
C17A0.19126 (13)0.3024 (3)0.4981 (3)0.0413 (14)
C18A0.07892 (11)0.1361 (3)0.7077 (2)0.0214 (10)
C19A0.07148 (12)0.0310 (3)0.7350 (2)0.0272 (11)
C20A0.02787 (13)0.0053 (3)0.7408 (3)0.0375 (14)
C21A0.00766 (13)0.0621 (3)0.7191 (3)0.0435 (15)
C22A0.00064 (13)0.1652 (3)0.6906 (3)0.0385 (14)
C23A0.04326 (12)0.2023 (3)0.6857 (2)0.0281 (11)
C24A0.17326 (11)0.3020 (3)0.7538 (2)0.0200 (10)
C25A0.21382 (12)0.2433 (3)0.7440 (2)0.0239 (10)
C26A0.25519 (11)0.2914 (3)0.7758 (2)0.0263 (11)
C27A0.25627 (12)0.3900 (3)0.8121 (2)0.0287 (11)
C28A0.21688 (11)0.4523 (3)0.8219 (2)0.0241 (10)
C29A0.17510 (11)0.4079 (3)0.7938 (2)0.0206 (10)
C30A0.13577 (12)0.4678 (3)0.8058 (2)0.0258 (11)
C31A0.13853 (13)0.5680 (3)0.8430 (2)0.0298 (11)
C32A0.18007 (13)0.6118 (3)0.8693 (2)0.0308 (11)
C33A0.21841 (13)0.5555 (3)0.8589 (2)0.0302 (11)
C34A0.10465 (15)0.1339 (3)0.7874 (3)0.0422 (16)
N1B0.33990 (10)0.2579 (2)0.91158 (18)0.0262 (9)
N2B0.33177 (10)0.3523 (2)0.93963 (18)0.0244 (9)
N3B0.38421 (11)0.0532 (2)0.94794 (19)0.0312 (10)
N4B0.38770 (10)0.0405 (2)0.91424 (19)0.0290 (10)
C1B0.30027 (13)0.1936 (3)0.8996 (2)0.0271 (11)
C2B0.29852 (14)0.1203 (3)0.8302 (2)0.0320 (13)
C3B0.26207 (16)0.0518 (3)0.8190 (3)0.0426 (14)
C4B0.22736 (15)0.0582 (3)0.8740 (3)0.0456 (16)
C5B0.22840 (15)0.1309 (3)0.9410 (3)0.0427 (16)
C6B0.26509 (13)0.1983 (3)0.9542 (3)0.0321 (11)
C7B0.36599 (12)0.4239 (3)0.9547 (2)0.0237 (10)
C8B0.41092 (13)0.4115 (3)0.9292 (2)0.0294 (11)
C9B0.44149 (13)0.4989 (3)0.9475 (3)0.0366 (14)
C10B0.42835 (14)0.5886 (3)0.9872 (3)0.0372 (12)
C11B0.38393 (13)0.6047 (3)1.0121 (2)0.0296 (11)
C12B0.35182 (12)0.5231 (3)0.9956 (2)0.0250 (10)
C13B0.30741 (14)0.5394 (3)1.0198 (2)0.0312 (11)
C14B0.29580 (15)0.6325 (3)1.0607 (2)0.0379 (14)
C15B0.32742 (17)0.7124 (3)1.0774 (3)0.0440 (14)
C16B0.37014 (16)0.6997 (3)1.0526 (3)0.0418 (14)
C17B0.33199 (18)0.0546 (4)0.7037 (3)0.0554 (18)
C18B0.36165 (14)0.0562 (3)1.0280 (2)0.0328 (13)
C19B0.37675 (17)0.1327 (3)1.0892 (3)0.0431 (14)
C20B0.3548 (2)0.1444 (4)1.1660 (3)0.0578 (19)
C21B0.3191 (2)0.0810 (4)1.1818 (3)0.064 (2)
C22B0.30399 (18)0.0044 (3)1.1220 (3)0.0541 (18)
C23B0.32578 (15)0.0080 (3)1.0446 (3)0.0408 (14)
C24B0.41257 (12)0.0529 (3)0.8422 (2)0.0269 (11)
C25B0.44239 (13)0.0247 (3)0.8100 (2)0.0311 (11)
C26B0.47397 (13)0.0098 (3)0.7488 (3)0.0357 (11)
C27B0.47482 (13)0.1117 (3)0.7195 (2)0.0323 (12)
C28B0.44358 (12)0.1905 (3)0.7450 (2)0.0251 (10)
C29B0.41151 (12)0.1612 (3)0.8060 (2)0.0235 (10)
C30B0.38008 (12)0.2379 (3)0.8295 (2)0.0280 (11)
C31B0.38085 (13)0.3392 (3)0.7941 (3)0.0317 (11)
C32B0.41280 (13)0.3679 (3)0.7359 (2)0.0301 (11)
C33B0.44360 (13)0.2955 (3)0.7117 (2)0.0315 (12)
C34B0.4358 (2)0.2576 (5)1.1305 (4)0.079 (2)
H3A0.113000.348400.433600.0400*
H4A0.039600.319200.383900.0450*
H5A0.004700.158500.407100.0430*
H6A0.043800.023700.483200.0350*
H9A0.230000.234800.681000.0420*
H10A0.195400.394900.669400.0470*
H13A0.058700.208900.499900.0390*
H14A0.026300.373900.483700.0500*
H15A0.061400.524100.543100.0530*
H16A0.130900.508900.615300.0460*
H17A0.221000.299000.525200.0620*
H17B0.193100.302400.435800.0620*
H17C0.176700.366600.515900.0620*
H20A0.022500.074700.759200.0450*
H21A0.037000.037600.723700.0520*
H22A0.024900.209200.675000.0460*
H23A0.048500.271900.667600.0340*
H26A0.282000.254000.771300.0320*
H27A0.283900.418100.831500.0350*
H30A0.107800.439600.788500.0310*
H31A0.112400.606700.850600.0360*
H32A0.181500.679600.894100.0370*
H33A0.246100.585300.876400.0360*
H34A0.133800.164800.799600.0640*
H34B0.088300.132800.839700.0640*
H34C0.088400.175700.743800.0640*
H3B0.261200.001700.774300.0510*
H4B0.202800.012800.865900.0550*
H5B0.204500.134900.977500.0520*
H6B0.265900.246801.000100.0380*
H9B0.471100.493100.931500.0440*
H10B0.449500.642200.998800.0440*
H13B0.285800.487001.008200.0370*
H14B0.266400.642001.077300.0450*
H15B0.319300.774601.105700.0530*
H16B0.390800.754701.062500.0500*
H17D0.359100.061000.672800.0830*
H17E0.306700.076300.666500.0830*
H17F0.328100.018400.721100.0830*
H20B0.364500.195501.206700.0700*
H21B0.304500.089101.233500.0760*
H22B0.279500.038401.133500.0650*
H23B0.316000.059601.004300.0490*
H26B0.494500.039100.728600.0430*
H27B0.496700.131100.681300.0390*
H30B0.358600.220500.869100.0340*
H31B0.359500.389000.809600.0380*
H32B0.413100.436900.713500.0360*
H33B0.465000.315200.672600.0380*
H34D0.460300.294101.105100.1180*
H34E0.447200.213801.178000.1180*
H34F0.415100.309001.151900.1180*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
Cu1A0.0208 (2)0.0217 (2)0.0270 (2)0.0036 (2)0.0015 (2)0.0017 (2)
Cu1B0.0482 (3)0.0193 (2)0.0317 (3)0.0050 (2)0.0153 (2)0.0016 (2)
O1A0.0329 (15)0.0269 (14)0.0412 (16)0.0035 (11)0.0016 (13)0.0066 (12)
O2A0.0243 (13)0.0241 (13)0.0410 (16)0.0042 (11)0.0008 (12)0.0036 (11)
O3A0.0276 (14)0.0257 (13)0.0420 (16)0.0005 (11)0.0050 (12)0.0062 (12)
O4A0.0198 (12)0.0252 (12)0.0323 (14)0.0055 (10)0.0014 (11)0.0037 (11)
N1A0.0249 (15)0.0220 (15)0.0221 (15)0.0021 (12)0.0028 (12)0.0010 (12)
N2A0.0259 (15)0.0237 (15)0.0242 (15)0.0022 (13)0.0040 (12)0.0052 (12)
N3A0.0174 (14)0.0203 (14)0.0222 (15)0.0009 (11)0.0027 (12)0.0004 (11)
N4A0.0186 (14)0.0209 (14)0.0236 (15)0.0004 (12)0.0053 (12)0.0023 (12)
C1A0.0278 (19)0.0244 (18)0.0205 (18)0.0045 (15)0.0057 (15)0.0004 (14)
O1B0.062 (2)0.0337 (15)0.0253 (14)0.0052 (14)0.0095 (14)0.0089 (12)
C2A0.030 (2)0.0293 (19)0.0229 (19)0.0050 (16)0.0051 (16)0.0021 (15)
O2B0.0415 (16)0.0250 (14)0.0476 (17)0.0048 (12)0.0188 (14)0.0020 (12)
C3A0.047 (2)0.028 (2)0.026 (2)0.0077 (18)0.0069 (18)0.0006 (16)
O3B0.081 (2)0.0451 (18)0.0324 (17)0.0039 (17)0.0005 (16)0.0106 (14)
C4A0.047 (3)0.040 (2)0.026 (2)0.018 (2)0.0022 (19)0.0026 (17)
O4B0.0539 (18)0.0217 (13)0.0459 (17)0.0025 (13)0.0224 (14)0.0108 (12)
C5A0.032 (2)0.046 (2)0.029 (2)0.0153 (19)0.0009 (17)0.0020 (18)
C6A0.030 (2)0.031 (2)0.028 (2)0.0048 (16)0.0026 (16)0.0051 (16)
C7A0.031 (2)0.0194 (17)0.0234 (18)0.0014 (15)0.0051 (15)0.0032 (14)
C8A0.036 (2)0.0242 (19)0.0243 (19)0.0077 (16)0.0049 (16)0.0071 (15)
C9A0.039 (2)0.027 (2)0.039 (2)0.0142 (18)0.0026 (18)0.0011 (17)
C10A0.056 (3)0.026 (2)0.034 (2)0.0132 (19)0.002 (2)0.0044 (17)
C11A0.043 (2)0.0247 (19)0.030 (2)0.0051 (17)0.0086 (18)0.0039 (16)
C12A0.038 (2)0.0255 (19)0.0200 (18)0.0023 (16)0.0089 (16)0.0042 (14)
C13A0.032 (2)0.032 (2)0.033 (2)0.0043 (17)0.0064 (18)0.0031 (17)
C14A0.043 (3)0.036 (2)0.046 (3)0.003 (2)0.009 (2)0.009 (2)
C15A0.054 (3)0.029 (2)0.049 (3)0.012 (2)0.011 (2)0.0098 (19)
C16A0.057 (3)0.0210 (19)0.039 (2)0.0036 (18)0.014 (2)0.0021 (17)
C17A0.033 (2)0.034 (2)0.057 (3)0.0068 (18)0.004 (2)0.009 (2)
C18A0.0191 (17)0.0231 (17)0.0223 (17)0.0023 (14)0.0046 (14)0.0065 (14)
C19A0.0253 (19)0.0302 (19)0.0265 (19)0.0021 (16)0.0043 (16)0.0079 (15)
C20A0.033 (2)0.033 (2)0.047 (3)0.0105 (18)0.0069 (19)0.0050 (19)
C21A0.0205 (19)0.049 (3)0.061 (3)0.0148 (19)0.0031 (19)0.016 (2)
C22A0.022 (2)0.044 (2)0.049 (3)0.0046 (18)0.0024 (18)0.013 (2)
C23A0.0256 (19)0.0271 (19)0.031 (2)0.0011 (16)0.0035 (16)0.0065 (16)
C24A0.0196 (17)0.0198 (16)0.0207 (17)0.0013 (14)0.0010 (14)0.0018 (13)
C25A0.0253 (18)0.0264 (18)0.0202 (18)0.0013 (15)0.0028 (15)0.0030 (14)
C26A0.0171 (17)0.032 (2)0.030 (2)0.0020 (15)0.0024 (15)0.0008 (16)
C27A0.0215 (18)0.033 (2)0.032 (2)0.0058 (15)0.0047 (16)0.0006 (16)
C28A0.0243 (18)0.0280 (18)0.0204 (17)0.0064 (15)0.0052 (14)0.0011 (14)
C29A0.0250 (17)0.0215 (17)0.0154 (16)0.0040 (14)0.0032 (14)0.0015 (13)
C30A0.0234 (18)0.0249 (18)0.029 (2)0.0061 (15)0.0013 (15)0.0014 (15)
C31A0.032 (2)0.0270 (19)0.031 (2)0.0040 (17)0.0083 (16)0.0007 (16)
C32A0.035 (2)0.0274 (19)0.030 (2)0.0083 (17)0.0018 (17)0.0073 (16)
C33A0.032 (2)0.032 (2)0.0266 (19)0.0077 (17)0.0028 (16)0.0035 (16)
C34A0.053 (3)0.030 (2)0.045 (3)0.001 (2)0.016 (2)0.0089 (19)
N1B0.0393 (18)0.0193 (14)0.0204 (15)0.0003 (13)0.0059 (13)0.0026 (12)
N2B0.0352 (17)0.0185 (14)0.0195 (15)0.0012 (13)0.0004 (13)0.0033 (12)
N3B0.046 (2)0.0238 (16)0.0246 (16)0.0053 (14)0.0101 (15)0.0012 (13)
N4B0.0372 (18)0.0228 (15)0.0277 (17)0.0073 (13)0.0093 (14)0.0008 (13)
C1B0.034 (2)0.0208 (17)0.0264 (19)0.0017 (16)0.0001 (16)0.0059 (15)
C2B0.050 (3)0.0202 (18)0.025 (2)0.0039 (17)0.0042 (18)0.0014 (15)
C3B0.067 (3)0.026 (2)0.033 (2)0.002 (2)0.016 (2)0.0009 (17)
C4B0.046 (3)0.033 (2)0.056 (3)0.015 (2)0.014 (2)0.007 (2)
C5B0.041 (3)0.038 (2)0.049 (3)0.003 (2)0.001 (2)0.013 (2)
C6B0.037 (2)0.0258 (19)0.033 (2)0.0012 (17)0.0021 (18)0.0051 (16)
C7B0.0325 (19)0.0178 (16)0.0205 (17)0.0008 (15)0.0000 (15)0.0008 (14)
C8B0.038 (2)0.0217 (18)0.029 (2)0.0043 (16)0.0055 (17)0.0013 (15)
C9B0.031 (2)0.033 (2)0.046 (3)0.0019 (18)0.0036 (19)0.0016 (18)
C10B0.042 (2)0.030 (2)0.039 (2)0.0066 (18)0.0032 (19)0.0049 (18)
C11B0.044 (2)0.0201 (18)0.0240 (19)0.0012 (16)0.0051 (17)0.0027 (14)
C12B0.038 (2)0.0179 (17)0.0190 (17)0.0040 (15)0.0020 (16)0.0022 (14)
C13B0.045 (2)0.0281 (19)0.0208 (18)0.0070 (17)0.0040 (17)0.0022 (15)
C14B0.056 (3)0.030 (2)0.029 (2)0.015 (2)0.0139 (19)0.0025 (17)
C15B0.076 (3)0.023 (2)0.034 (2)0.013 (2)0.012 (2)0.0007 (17)
C16B0.069 (3)0.023 (2)0.033 (2)0.003 (2)0.001 (2)0.0083 (17)
C17B0.077 (4)0.057 (3)0.032 (2)0.009 (3)0.000 (2)0.018 (2)
C18B0.053 (3)0.0209 (18)0.0258 (19)0.0163 (18)0.0133 (18)0.0050 (15)
C19B0.076 (3)0.028 (2)0.026 (2)0.017 (2)0.009 (2)0.0039 (17)
C20B0.118 (5)0.034 (2)0.023 (2)0.025 (3)0.020 (3)0.0029 (19)
C21B0.115 (5)0.039 (3)0.040 (3)0.039 (3)0.039 (3)0.014 (2)
C22B0.080 (4)0.037 (2)0.049 (3)0.021 (2)0.038 (3)0.015 (2)
C23B0.068 (3)0.0243 (19)0.032 (2)0.013 (2)0.020 (2)0.0066 (17)
C24B0.034 (2)0.0242 (18)0.0229 (18)0.0057 (15)0.0054 (16)0.0031 (14)
C25B0.037 (2)0.0262 (19)0.031 (2)0.0033 (17)0.0103 (17)0.0035 (16)
C26B0.039 (2)0.0267 (19)0.043 (2)0.0047 (17)0.0182 (19)0.0041 (17)
C27B0.032 (2)0.032 (2)0.034 (2)0.0023 (17)0.0118 (17)0.0028 (17)
C28B0.0255 (18)0.0227 (17)0.0274 (19)0.0033 (15)0.0045 (15)0.0011 (15)
C29B0.0251 (18)0.0215 (17)0.0238 (18)0.0045 (14)0.0016 (15)0.0001 (14)
C30B0.0273 (19)0.0269 (19)0.030 (2)0.0033 (16)0.0047 (16)0.0015 (16)
C31B0.029 (2)0.0271 (19)0.039 (2)0.0022 (16)0.0009 (18)0.0012 (16)
C32B0.037 (2)0.0210 (18)0.032 (2)0.0026 (16)0.0014 (17)0.0052 (16)
C33B0.030 (2)0.031 (2)0.034 (2)0.0062 (17)0.0064 (17)0.0084 (17)
C34B0.088 (4)0.083 (4)0.062 (4)0.006 (3)0.019 (3)0.036 (3)
Geometric parameters (Å, º) top
Cu1A—O1A2.577 (3)C15A—H15A0.9300
Cu1A—O2A1.923 (2)C16A—H16A0.9300
Cu1A—O3A2.761 (3)C17A—H17C0.9600
Cu1A—O4A1.900 (2)C17A—H17B0.9600
Cu1A—N1A1.952 (3)C17A—H17A0.9600
Cu1A—N3A1.962 (3)C20A—H20A0.9300
Cu1B—N3B1.951 (3)C21A—H21A0.9300
Cu1B—O3B2.625 (3)C22A—H22A0.9300
Cu1B—O1B2.679 (3)C23A—H23A0.9300
Cu1B—O2B1.915 (2)C26A—H26A0.9300
Cu1B—O4B1.905 (3)C27A—H27A0.9300
Cu1B—N1B1.957 (3)C30A—H30A0.9300
O1A—C17A1.413 (5)C31A—H31A0.9300
O1A—C2A1.377 (4)C32A—H32A0.9300
O2A—C8A1.289 (4)C33A—H33A0.9300
O3A—C34A1.436 (5)C34A—H34A0.9600
O3A—C19A1.370 (4)C34A—H34B0.9600
O4A—C25A1.294 (4)C34A—H34C0.9600
N1A—C1A1.425 (4)C1B—C2B1.405 (5)
N1A—N2A1.284 (4)C1B—C6B1.376 (5)
N2A—C7A1.364 (4)C2B—C3B1.386 (6)
N3A—N4A1.278 (4)C3B—C4B1.370 (7)
N3A—C18A1.428 (4)C4B—C5B1.373 (6)
N4A—C24A1.361 (4)C5B—C6B1.386 (6)
C1A—C6A1.383 (5)C7B—C8B1.421 (5)
C1A—C2A1.386 (5)C7B—C12B1.463 (5)
O1B—C2B1.369 (5)C8B—C9B1.441 (5)
O1B—C17B1.431 (5)C9B—C10B1.345 (6)
C2A—C3A1.401 (5)C10B—C11B1.409 (6)
O2B—C8B1.291 (4)C11B—C12B1.412 (5)
C3A—C4A1.379 (6)C11B—C16B1.413 (5)
O3B—C19B1.374 (6)C12B—C13B1.406 (5)
O3B—C34B1.424 (7)C13B—C14B1.376 (5)
C4A—C5A1.375 (5)C14B—C15B1.388 (6)
O4B—C25B1.296 (4)C15B—C16B1.355 (7)
C5A—C6A1.395 (5)C18B—C19B1.399 (6)
C7A—C8A1.424 (5)C18B—C23B1.370 (6)
C7A—C12A1.456 (5)C19B—C20B1.385 (7)
C8A—C9A1.436 (5)C20B—C21B1.358 (8)
C9A—C10A1.354 (5)C21B—C22B1.386 (7)
C10A—C11A1.426 (6)C22B—C23B1.392 (7)
C11A—C16A1.418 (5)C24B—C25B1.421 (5)
C11A—C12A1.415 (5)C24B—C29B1.465 (5)
C12A—C13A1.400 (5)C25B—C26B1.430 (5)
C13A—C14A1.372 (5)C26B—C27B1.353 (5)
C14A—C15A1.388 (6)C27B—C28B1.424 (5)
C15A—C16A1.375 (6)C28B—C29B1.419 (5)
C18A—C23A1.374 (5)C28B—C33B1.410 (5)
C18A—C19A1.402 (5)C29B—C30B1.400 (5)
C19A—C20A1.382 (5)C30B—C31B1.380 (5)
C20A—C21A1.380 (5)C31B—C32B1.385 (5)
C21A—C22A1.382 (5)C32B—C33B1.354 (5)
C22A—C23A1.392 (5)C3B—H3B0.9300
C24A—C25A1.427 (5)C4B—H4B0.9300
C24A—C29A1.461 (5)C5B—H5B0.9300
C25A—C26A1.433 (5)C6B—H6B0.9300
C26A—C27A1.354 (5)C9B—H9B0.9300
C27A—C28A1.422 (5)C10B—H10B0.9300
C28A—C29A1.409 (5)C13B—H13B0.9300
C28A—C33A1.411 (5)C14B—H14B0.9300
C29A—C30A1.410 (5)C15B—H15B0.9300
C30A—C31A1.379 (5)C16B—H16B0.9300
C31A—C32A1.393 (5)C17B—H17D0.9600
C32A—C33A1.357 (5)C17B—H17E0.9600
N1B—C1B1.432 (5)C17B—H17F0.9600
N1B—N2B1.285 (4)C20B—H20B0.9300
N2B—C7B1.367 (5)C21B—H21B0.9300
C3A—H3A0.9300C22B—H22B0.9300
N3B—N4B1.288 (4)C23B—H23B0.9300
N3B—C18B1.431 (5)C26B—H26B0.9300
C4A—H4A0.9300C27B—H27B0.9300
N4B—C24B1.371 (4)C30B—H30B0.9300
C5A—H5A0.9300C31B—H31B0.9300
C6A—H6A0.9300C32B—H32B0.9300
C9A—H9A0.9300C33B—H33B0.9300
C10A—H10A0.9300C34B—H34D0.9600
C13A—H13A0.9300C34B—H34E0.9600
C14A—H14A0.9300C34B—H34F0.9600
O1A—Cu1A—O2A118.06 (10)O1A—C17A—H17B109.00
O1A—Cu1A—O3A140.16 (8)O1A—C17A—H17C109.00
O1A—Cu1A—O4A92.50 (9)H17A—C17A—H17B109.00
O1A—Cu1A—N1A70.52 (10)H17A—C17A—H17C109.00
O1A—Cu1A—N3A87.04 (10)H17B—C17A—H17C109.00
O2A—Cu1A—O3A90.46 (9)C19A—C20A—H20A120.00
O2A—Cu1A—O4A93.91 (10)C21A—C20A—H20A120.00
O2A—Cu1A—N1A88.34 (11)C20A—C21A—H21A119.00
O2A—Cu1A—N3A154.40 (11)C22A—C21A—H21A119.00
O3A—Cu1A—O4A114.01 (9)C21A—C22A—H22A120.00
O3A—Cu1A—N1A84.17 (10)C23A—C22A—H22A120.00
O3A—Cu1A—N3A65.09 (9)C18A—C23A—H23A120.00
O4A—Cu1A—N1A161.64 (11)C22A—C23A—H23A120.00
O4A—Cu1A—N3A89.68 (11)C25A—C26A—H26A119.00
N1A—Cu1A—N3A96.15 (11)C27A—C26A—H26A119.00
O1B—Cu1B—N1B67.72 (10)C26A—C27A—H27A119.00
O1B—Cu1B—N3B80.02 (11)C28A—C27A—H27A119.00
O2B—Cu1B—O3B89.74 (10)C29A—C30A—H30A120.00
O2B—Cu1B—O4B92.83 (11)C31A—C30A—H30A120.00
O2B—Cu1B—N1B90.23 (11)C30A—C31A—H31A120.00
O2B—Cu1B—N3B156.69 (12)C32A—C31A—H31A120.00
O3B—Cu1B—O4B114.58 (11)C31A—C32A—H32A120.00
O3B—Cu1B—N1B88.92 (11)C33A—C32A—H32A120.00
O3B—Cu1B—N3B68.29 (10)C28A—C33A—H33A120.00
O4B—Cu1B—N1B156.30 (12)C32A—C33A—H33A120.00
O4B—Cu1B—N3B89.61 (12)O3A—C34A—H34A110.00
N1B—Cu1B—N3B96.78 (12)O3A—C34A—H34B109.00
O1B—Cu1B—O2B123.06 (10)O3A—C34A—H34C109.00
O1B—Cu1B—O3B138.05 (10)H34A—C34A—H34B110.00
O1B—Cu1B—O4B91.15 (11)H34A—C34A—H34C110.00
Cu1A—O1A—C17A138.0 (2)H34B—C34A—H34C109.00
C2A—O1A—C17A118.4 (3)N1B—C1B—C2B117.6 (3)
Cu1A—O1A—C2A101.01 (19)N1B—C1B—C6B123.0 (3)
Cu1A—O2A—C8A119.4 (2)C2B—C1B—C6B119.4 (4)
Cu1A—O3A—C19A98.56 (19)O1B—C2B—C1B115.3 (3)
Cu1A—O3A—C34A135.7 (2)O1B—C2B—C3B125.0 (3)
C19A—O3A—C34A118.2 (3)C1B—C2B—C3B119.7 (4)
Cu1A—O4A—C25A125.4 (2)C2B—C3B—C4B119.8 (4)
Cu1A—N1A—C1A117.8 (2)C3B—C4B—C5B120.8 (4)
N2A—N1A—C1A114.6 (3)C4B—C5B—C6B120.0 (4)
Cu1A—N1A—N2A126.9 (2)C1B—C6B—C5B120.2 (4)
N1A—N2A—C7A119.6 (3)N2B—C7B—C8B125.8 (3)
N4A—N3A—C18A112.1 (3)N2B—C7B—C12B113.6 (3)
Cu1A—N3A—C18A118.5 (2)C8B—C7B—C12B120.5 (3)
Cu1A—N3A—N4A129.3 (2)O2B—C8B—C7B124.7 (3)
N3A—N4A—C24A120.6 (3)O2B—C8B—C9B118.2 (3)
N1A—C1A—C2A117.8 (3)C7B—C8B—C9B117.2 (3)
N1A—C1A—C6A122.1 (3)C8B—C9B—C10B121.8 (4)
C2A—C1A—C6A120.1 (3)C9B—C10B—C11B122.8 (4)
C2B—O1B—C17B116.1 (3)C10B—C11B—C12B118.9 (3)
Cu1B—O1B—C2B100.0 (2)C10B—C11B—C16B122.5 (4)
Cu1B—O1B—C17B138.3 (3)C12B—C11B—C16B118.6 (4)
O1A—C2A—C1A116.4 (3)C7B—C12B—C11B118.9 (3)
O1A—C2A—C3A123.7 (3)C7B—C12B—C13B122.2 (3)
C1A—C2A—C3A119.9 (3)C11B—C12B—C13B118.9 (3)
Cu1B—O2B—C8B122.8 (2)C12B—C13B—C14B120.3 (4)
C2A—C3A—C4A119.1 (3)C13B—C14B—C15B120.7 (4)
Cu1B—O3B—C19B99.1 (2)C14B—C15B—C16B120.0 (4)
Cu1B—O3B—C34B137.8 (3)C11B—C16B—C15B121.4 (4)
C19B—O3B—C34B119.1 (4)N3B—C18B—C19B116.5 (4)
C3A—C4A—C5A121.5 (3)N3B—C18B—C23B123.3 (3)
Cu1B—O4B—C25B122.6 (2)C19B—C18B—C23B120.2 (4)
C4A—C5A—C6A119.3 (3)O3B—C19B—C18B115.4 (4)
C1A—C6A—C5A120.2 (3)O3B—C19B—C20B124.9 (4)
N2A—C7A—C8A124.8 (3)C18B—C19B—C20B119.7 (4)
C8A—C7A—C12A120.5 (3)C19B—C20B—C21B119.9 (4)
N2A—C7A—C12A114.5 (3)C20B—C21B—C22B121.0 (5)
O2A—C8A—C7A124.7 (3)C21B—C22B—C23B119.6 (4)
O2A—C8A—C9A118.0 (3)C18B—C23B—C22B119.7 (4)
C7A—C8A—C9A117.3 (3)N4B—C24B—C25B125.2 (3)
C8A—C9A—C10A122.1 (4)N4B—C24B—C29B114.1 (3)
C9A—C10A—C11A122.0 (4)C25B—C24B—C29B120.1 (3)
C12A—C11A—C16A119.3 (4)O4B—C25B—C24B125.3 (3)
C10A—C11A—C12A118.6 (3)O4B—C25B—C26B116.9 (3)
C10A—C11A—C16A122.1 (4)C24B—C25B—C26B117.7 (3)
C7A—C12A—C11A119.4 (3)C25B—C26B—C27B121.8 (4)
C7A—C12A—C13A122.4 (3)C26B—C27B—C28B122.5 (3)
C11A—C12A—C13A118.2 (3)C27B—C28B—C29B118.2 (3)
C12A—C13A—C14A121.4 (4)C27B—C28B—C33B122.2 (3)
C13A—C14A—C15A120.8 (4)C29B—C28B—C33B119.5 (3)
C14A—C15A—C16A119.7 (4)C24B—C29B—C28B119.2 (3)
C11A—C16A—C15A120.6 (4)C24B—C29B—C30B122.6 (3)
N3A—C18A—C19A116.9 (3)C28B—C29B—C30B118.3 (3)
N3A—C18A—C23A122.6 (3)C29B—C30B—C31B120.2 (3)
C19A—C18A—C23A120.5 (3)C30B—C31B—C32B121.2 (4)
O3A—C19A—C18A115.1 (3)C31B—C32B—C33B120.0 (3)
O3A—C19A—C20A125.5 (3)C28B—C33B—C32B120.7 (3)
C18A—C19A—C20A119.4 (3)C2B—C3B—H3B120.00
C19A—C20A—C21A119.6 (4)C4B—C3B—H3B120.00
C20A—C21A—C22A121.4 (4)C3B—C4B—H4B120.00
C21A—C22A—C23A119.1 (4)C5B—C4B—H4B120.00
C18A—C23A—C22A120.0 (3)C4B—C5B—H5B120.00
N4A—C24A—C29A114.4 (3)C6B—C5B—H5B120.00
C25A—C24A—C29A119.9 (3)C1B—C6B—H6B120.00
N4A—C24A—C25A125.1 (3)C5B—C6B—H6B120.00
O4A—C25A—C24A124.8 (3)C8B—C9B—H9B119.00
C24A—C25A—C26A117.6 (3)C10B—C9B—H9B119.00
O4A—C25A—C26A117.5 (3)C9B—C10B—H10B119.00
C25A—C26A—C27A121.7 (3)C11B—C10B—H10B119.00
C26A—C27A—C28A122.8 (3)C12B—C13B—H13B120.00
C27A—C28A—C29A118.0 (3)C14B—C13B—H13B120.00
C27A—C28A—C33A122.4 (3)C13B—C14B—H14B120.00
C29A—C28A—C33A119.6 (3)C15B—C14B—H14B120.00
C28A—C29A—C30A118.4 (3)C14B—C15B—H15B120.00
C24A—C29A—C30A121.6 (3)C16B—C15B—H15B120.00
C24A—C29A—C28A120.0 (3)C11B—C16B—H16B119.00
C29A—C30A—C31A120.4 (3)C15B—C16B—H16B119.00
C30A—C31A—C32A120.7 (3)O1B—C17B—H17D110.00
C31A—C32A—C33A120.0 (3)O1B—C17B—H17E109.00
C28A—C33A—C32A120.9 (3)O1B—C17B—H17F109.00
Cu1B—N1B—N2B128.3 (2)H17D—C17B—H17E110.00
Cu1B—N1B—C1B118.3 (2)H17D—C17B—H17F109.00
N2B—N1B—C1B113.1 (3)H17E—C17B—H17F109.00
N1B—N2B—C7B120.5 (3)C19B—C20B—H20B120.00
C2A—C3A—H3A120.00C21B—C20B—H20B120.00
C4A—C3A—H3A120.00C20B—C21B—H21B120.00
N4B—N3B—C18B114.8 (3)C22B—C21B—H21B119.00
Cu1B—N3B—N4B128.1 (2)C21B—C22B—H22B120.00
Cu1B—N3B—C18B116.6 (2)C23B—C22B—H22B120.00
C5A—C4A—H4A119.00C18B—C23B—H23B120.00
C3A—C4A—H4A119.00C22B—C23B—H23B120.00
N3B—N4B—C24B119.0 (3)C25B—C26B—H26B119.00
C4A—C5A—H5A120.00C27B—C26B—H26B119.00
C6A—C5A—H5A120.00C26B—C27B—H27B119.00
C1A—C6A—H6A120.00C28B—C27B—H27B119.00
C5A—C6A—H6A120.00C29B—C30B—H30B120.00
C10A—C9A—H9A119.00C31B—C30B—H30B120.00
C8A—C9A—H9A119.00C30B—C31B—H31B119.00
C9A—C10A—H10A119.00C32B—C31B—H31B119.00
C11A—C10A—H10A119.00C31B—C32B—H32B120.00
C14A—C13A—H13A119.00C33B—C32B—H32B120.00
C12A—C13A—H13A119.00C28B—C33B—H33B120.00
C13A—C14A—H14A120.00C32B—C33B—H33B120.00
C15A—C14A—H14A120.00O3B—C34B—H34D110.00
C16A—C15A—H15A120.00O3B—C34B—H34E109.00
C14A—C15A—H15A120.00O3B—C34B—H34F109.00
C15A—C16A—H16A120.00H34D—C34B—H34E110.00
C11A—C16A—H16A120.00H34D—C34B—H34F110.00
O1A—C17A—H17A109.00H34E—C34B—H34F109.00
O2A—Cu1A—O1A—C2A109.2 (2)C4A—C5A—C6A—C1A0.8 (5)
O2A—Cu1A—O1A—C17A90.9 (3)C12A—C7A—C8A—O2A179.2 (3)
O3A—Cu1A—O1A—C2A21.5 (2)N2A—C7A—C8A—O2A5.1 (5)
O3A—Cu1A—O1A—C17A138.4 (3)N2A—C7A—C8A—C9A174.1 (3)
O4A—Cu1A—O1A—C2A155.0 (2)N2A—C7A—C12A—C13A4.7 (5)
O4A—Cu1A—O1A—C17A4.9 (3)C12A—C7A—C8A—C9A0.1 (5)
N1A—Cu1A—O1A—C2A32.1 (2)N2A—C7A—C12A—C11A177.2 (3)
N1A—Cu1A—O1A—C17A168.0 (4)C8A—C7A—C12A—C11A2.5 (5)
N3A—Cu1A—O1A—C2A65.5 (2)C8A—C7A—C12A—C13A179.4 (3)
N3A—Cu1A—O1A—C17A94.4 (3)C7A—C8A—C9A—C10A2.7 (6)
O1A—Cu1A—O2A—C8A107.5 (2)O2A—C8A—C9A—C10A178.0 (4)
O3A—Cu1A—O2A—C8A43.5 (2)C8A—C9A—C10A—C11A3.1 (7)
O4A—Cu1A—O2A—C8A157.6 (2)C9A—C10A—C11A—C12A0.5 (6)
N1A—Cu1A—O2A—C8A40.6 (2)C9A—C10A—C11A—C16A179.5 (4)
N3A—Cu1A—O2A—C8A60.2 (4)C10A—C11A—C16A—C15A179.6 (4)
O1A—Cu1A—O3A—C19A11.0 (2)C10A—C11A—C12A—C7A2.3 (5)
O1A—Cu1A—O3A—C34A136.0 (3)C10A—C11A—C12A—C13A179.5 (3)
O2A—Cu1A—O3A—C19A149.1 (2)C16A—C11A—C12A—C7A177.8 (3)
O2A—Cu1A—O3A—C34A2.1 (3)C16A—C11A—C12A—C13A0.4 (5)
O4A—Cu1A—O3A—C19A116.43 (19)C12A—C11A—C16A—C15A0.3 (6)
O4A—Cu1A—O3A—C34A96.6 (3)C11A—C12A—C13A—C14A0.2 (5)
N1A—Cu1A—O3A—C19A60.8 (2)C7A—C12A—C13A—C14A178.4 (3)
N1A—Cu1A—O3A—C34A86.2 (3)C12A—C13A—C14A—C15A1.0 (6)
N3A—Cu1A—O3A—C19A38.77 (19)C13A—C14A—C15A—C16A1.1 (7)
N3A—Cu1A—O3A—C34A174.2 (4)C14A—C15A—C16A—C11A0.4 (7)
O1A—Cu1A—O4A—C25A65.7 (3)C23A—C18A—C19A—O3A179.3 (3)
O2A—Cu1A—O4A—C25A176.0 (3)N3A—C18A—C19A—O3A0.2 (4)
O3A—Cu1A—O4A—C25A83.7 (3)N3A—C18A—C19A—C20A178.3 (3)
N3A—Cu1A—O4A—C25A21.3 (3)C19A—C18A—C23A—C22A0.1 (5)
O1A—Cu1A—N1A—N2A155.7 (3)C23A—C18A—C19A—C20A0.9 (5)
O1A—Cu1A—N1A—C1A34.3 (2)N3A—C18A—C23A—C22A179.0 (3)
O2A—Cu1A—N1A—N2A35.0 (3)O3A—C19A—C20A—C21A178.7 (4)
O2A—Cu1A—N1A—C1A154.9 (2)C18A—C19A—C20A—C21A0.4 (6)
O3A—Cu1A—N1A—N2A55.6 (3)C19A—C20A—C21A—C22A0.8 (7)
O3A—Cu1A—N1A—C1A114.5 (2)C20A—C21A—C22A—C23A1.5 (7)
N3A—Cu1A—N1A—N2A119.7 (3)C21A—C22A—C23A—C18A1.1 (6)
N3A—Cu1A—N1A—C1A50.4 (2)C25A—C24A—C29A—C28A0.6 (5)
O1A—Cu1A—N3A—N4A70.8 (3)N4A—C24A—C25A—O4A8.6 (5)
O1A—Cu1A—N3A—C18A107.3 (2)N4A—C24A—C25A—C26A169.3 (3)
O2A—Cu1A—N3A—N4A120.1 (3)C29A—C24A—C25A—O4A178.8 (3)
O2A—Cu1A—N3A—C18A61.8 (4)C29A—C24A—C25A—C26A1.0 (5)
O3A—Cu1A—N3A—N4A138.6 (3)N4A—C24A—C29A—C28A171.8 (3)
O3A—Cu1A—N3A—C18A43.4 (2)N4A—C24A—C29A—C30A7.8 (4)
O4A—Cu1A—N3A—N4A21.7 (3)C25A—C24A—C29A—C30A179.1 (3)
O4A—Cu1A—N3A—C18A160.2 (2)C24A—C25A—C26A—C27A1.5 (5)
N1A—Cu1A—N3A—N4A140.8 (3)O4A—C25A—C26A—C27A179.5 (3)
N1A—Cu1A—N3A—C18A37.3 (2)C25A—C26A—C27A—C28A0.5 (5)
N3B—Cu1B—O4B—C25B29.2 (3)C26A—C27A—C28A—C33A179.3 (3)
O1B—Cu1B—N1B—N2B148.5 (3)C26A—C27A—C28A—C29A1.2 (5)
O1B—Cu1B—N1B—C1B38.8 (2)C27A—C28A—C29A—C24A1.6 (5)
O2B—Cu1B—N1B—N2B22.5 (3)C33A—C28A—C29A—C30A1.6 (5)
O2B—Cu1B—N1B—C1B164.8 (2)C27A—C28A—C29A—C30A178.0 (3)
O3B—Cu1B—N1B—N2B67.3 (3)C33A—C28A—C29A—C24A178.8 (3)
O3B—Cu1B—N1B—C1B105.5 (2)C27A—C28A—C33A—C32A178.4 (3)
O4B—Cu1B—N1B—N2B120.1 (3)C29A—C28A—C33A—C32A1.3 (5)
O4B—Cu1B—N1B—C1B67.2 (4)C28A—C29A—C30A—C31A1.0 (5)
N3B—Cu1B—N1B—N2B135.2 (3)C24A—C29A—C30A—C31A179.4 (3)
N3B—Cu1B—N1B—C1B37.5 (2)C29A—C30A—C31A—C32A0.0 (5)
O1B—Cu1B—N3B—N4B59.9 (3)C30A—C31A—C32A—C33A0.4 (5)
O1B—Cu1B—N3B—C18B111.0 (3)C31A—C32A—C33A—C28A0.3 (5)
O2B—Cu1B—N3B—N4B127.6 (3)Cu1B—N1B—N2B—C7B6.9 (4)
O2B—Cu1B—N3B—C18B61.5 (5)C1B—N1B—N2B—C7B179.9 (3)
O3B—Cu1B—N3B—N4B148.1 (3)Cu1B—N1B—C1B—C2B40.6 (4)
O3B—Cu1B—N3B—C18B41.0 (3)Cu1B—N1B—C1B—C6B137.3 (3)
O4B—Cu1B—N3B—N4B31.3 (3)N2B—N1B—C1B—C2B145.6 (3)
O4B—Cu1B—N3B—C18B157.7 (3)N2B—N1B—C1B—C6B36.5 (5)
N1B—Cu1B—N3B—N4B125.8 (3)N1B—N2B—C7B—C8B10.9 (5)
N1B—Cu1B—N3B—C18B45.2 (3)N1B—N2B—C7B—C12B173.5 (3)
O2B—Cu1B—O3B—C19B149.0 (2)Cu1B—N3B—N4B—C24B15.2 (5)
O2B—Cu1B—O3B—C34B6.3 (5)C18B—N3B—N4B—C24B173.7 (3)
O4B—Cu1B—O3B—C19B118.0 (2)Cu1B—N3B—C18B—C19B41.6 (4)
O4B—Cu1B—O3B—C34B86.7 (5)Cu1B—N3B—C18B—C23B135.6 (3)
N1B—Cu1B—O3B—C19B58.8 (2)N4B—N3B—C18B—C19B146.3 (4)
N1B—Cu1B—O3B—C34B96.5 (5)N4B—N3B—C18B—C23B36.5 (5)
N3B—Cu1B—O3B—C19B38.9 (2)N3B—N4B—C24B—C25B12.8 (5)
N3B—Cu1B—O3B—C34B165.7 (5)N3B—N4B—C24B—C29B175.9 (3)
O1B—Cu1B—O4B—C25B50.8 (3)N1B—C1B—C2B—O1B2.0 (5)
O2B—Cu1B—O4B—C25B174.0 (3)N1B—C1B—C2B—C3B176.2 (3)
O3B—Cu1B—O4B—C25B95.0 (3)C6B—C1B—C2B—O1B180.0 (3)
N1B—Cu1B—O4B—C25B76.9 (4)C6B—C1B—C2B—C3B1.8 (6)
N1B—Cu1B—O2B—C8B29.3 (3)N1B—C1B—C6B—C5B177.5 (4)
N3B—Cu1B—O2B—C8B78.6 (4)C2B—C1B—C6B—C5B0.3 (6)
O2B—Cu1B—O1B—C2B111.1 (2)O1B—C2B—C3B—C4B180.0 (4)
O2B—Cu1B—O1B—C17B98.9 (4)C1B—C2B—C3B—C4B2.0 (6)
O3B—Cu1B—O1B—C2B24.7 (3)C2B—C3B—C4B—C5B0.8 (6)
O3B—Cu1B—O1B—C17B125.4 (4)C3B—C4B—C5B—C6B0.6 (6)
O4B—Cu1B—O1B—C2B154.8 (2)C4B—C5B—C6B—C1B0.9 (6)
O4B—Cu1B—O1B—C17B4.7 (4)N2B—C7B—C8B—O2B1.9 (5)
N1B—Cu1B—O1B—C2B36.3 (2)N2B—C7B—C8B—C9B177.0 (3)
N1B—Cu1B—O1B—C17B173.7 (4)C12B—C7B—C8B—O2B177.2 (3)
N3B—Cu1B—O1B—C2B65.4 (2)C12B—C7B—C8B—C9B1.6 (5)
N3B—Cu1B—O1B—C17B84.7 (4)N2B—C7B—C12B—C11B178.1 (3)
O1B—Cu1B—O2B—C8B92.6 (3)N2B—C7B—C12B—C13B2.5 (4)
O3B—Cu1B—O2B—C8B59.6 (3)C8B—C7B—C12B—C11B2.2 (5)
O4B—Cu1B—O2B—C8B174.2 (3)C8B—C7B—C12B—C13B178.4 (3)
O1B—Cu1B—O3B—C34B150.5 (4)O2B—C8B—C9B—C10B179.1 (4)
O1B—Cu1B—O3B—C19B4.8 (3)C7B—C8B—C9B—C10B0.2 (6)
Cu1A—O1A—C2A—C3A155.8 (3)C8B—C9B—C10B—C11B1.3 (7)
Cu1A—O1A—C2A—C1A25.1 (3)C9B—C10B—C11B—C12B0.6 (6)
C17A—O1A—C2A—C3A9.1 (5)C9B—C10B—C11B—C16B179.0 (4)
C17A—O1A—C2A—C1A170.0 (3)C10B—C11B—C12B—C7B1.1 (5)
Cu1A—O2A—C8A—C9A150.7 (3)C10B—C11B—C12B—C13B179.5 (3)
Cu1A—O2A—C8A—C7A30.0 (4)C16B—C11B—C12B—C7B179.2 (3)
Cu1A—O3A—C19A—C18A27.6 (3)C16B—C11B—C12B—C13B0.2 (5)
C34A—O3A—C19A—C18A177.9 (3)C10B—C11B—C16B—C15B178.7 (4)
C34A—O3A—C19A—C20A0.4 (5)C12B—C11B—C16B—C15B1.6 (6)
Cu1A—O3A—C19A—C20A154.0 (3)C7B—C12B—C13B—C14B177.9 (3)
Cu1A—O4A—C25A—C26A170.3 (2)C11B—C12B—C13B—C14B1.5 (5)
Cu1A—O4A—C25A—C24A11.9 (5)C12B—C13B—C14B—C15B1.1 (5)
Cu1A—N1A—N2A—C7A13.4 (4)C13B—C14B—C15B—C16B0.7 (6)
C1A—N1A—N2A—C7A176.2 (3)C14B—C15B—C16B—C11B2.0 (7)
Cu1A—N1A—C1A—C6A145.0 (3)N3B—C18B—C19B—O3B3.2 (5)
N2A—N1A—C1A—C2A154.0 (3)N3B—C18B—C19B—C20B176.3 (4)
Cu1A—N1A—C1A—C2A34.7 (4)C23B—C18B—C19B—O3B179.5 (4)
N2A—N1A—C1A—C6A26.3 (4)C23B—C18B—C19B—C20B1.1 (6)
N1A—N2A—C7A—C8A14.5 (5)N3B—C18B—C23B—C22B176.1 (4)
N1A—N2A—C7A—C12A171.1 (3)C19B—C18B—C23B—C22B1.0 (6)
Cu1A—N3A—C18A—C23A133.2 (3)O3B—C19B—C20B—C21B180.0 (5)
N4A—N3A—C18A—C19A133.9 (3)C18B—C19B—C20B—C21B0.6 (7)
Cu1A—N3A—C18A—C19A47.7 (4)C19B—C20B—C21B—C22B0.2 (8)
C18A—N3A—N4A—C24A171.6 (3)C20B—C21B—C22B—C23B0.2 (7)
N4A—N3A—C18A—C23A45.2 (4)C21B—C22B—C23B—C18B0.6 (7)
Cu1A—N3A—N4A—C24A10.2 (4)N4B—C24B—C25B—O4B13.0 (6)
N3A—N4A—C24A—C25A9.3 (5)N4B—C24B—C25B—C26B164.4 (3)
N3A—N4A—C24A—C29A180.0 (3)C29B—C24B—C25B—O4B176.1 (3)
N1A—C1A—C6A—C5A178.3 (3)C29B—C24B—C25B—C26B6.4 (5)
C2A—C1A—C6A—C5A1.3 (5)N4B—C24B—C29B—C28B165.5 (3)
C6A—C1A—C2A—O1A178.4 (3)N4B—C24B—C29B—C30B14.2 (5)
N1A—C1A—C2A—O1A2.0 (4)C25B—C24B—C29B—C28B6.3 (5)
N1A—C1A—C2A—C3A178.9 (3)C25B—C24B—C29B—C30B174.1 (3)
C6A—C1A—C2A—C3A0.7 (5)O4B—C25B—C26B—C27B180.0 (4)
C17B—O1B—C2B—C1B174.3 (3)C24B—C25B—C26B—C27B2.3 (6)
Cu1B—O1B—C2B—C1B27.4 (3)C25B—C26B—C27B—C28B2.2 (6)
Cu1B—O1B—C2B—C3B150.7 (3)C26B—C27B—C28B—C29B2.4 (5)
C17B—O1B—C2B—C3B7.6 (5)C26B—C27B—C28B—C33B177.6 (4)
O1A—C2A—C3A—C4A179.5 (3)C27B—C28B—C29B—C24B1.8 (5)
C1A—C2A—C3A—C4A0.4 (5)C27B—C28B—C29B—C30B178.5 (3)
Cu1B—O2B—C8B—C7B23.5 (5)C33B—C28B—C29B—C24B178.2 (3)
Cu1B—O2B—C8B—C9B157.7 (3)C33B—C28B—C29B—C30B1.5 (5)
C2A—C3A—C4A—C5A1.0 (5)C27B—C28B—C33B—C32B178.6 (3)
C34B—O3B—C19B—C18B168.6 (4)C29B—C28B—C33B—C32B1.4 (5)
C34B—O3B—C19B—C20B12.1 (7)C24B—C29B—C30B—C31B179.3 (3)
Cu1B—O3B—C19B—C18B30.1 (4)C28B—C29B—C30B—C31B0.4 (5)
Cu1B—O3B—C19B—C20B149.2 (4)C29B—C30B—C31B—C32B0.9 (6)
C3A—C4A—C5A—C6A0.4 (5)C30B—C31B—C32B—C33B1.1 (6)
Cu1B—O4B—C25B—C24B15.0 (5)C31B—C32B—C33B—C28B0.1 (5)
Cu1B—O4B—C25B—C26B167.5 (3)
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
C3B—H3B···O4A0.932.483.270 (5)143
C13A—H13A···N2A0.932.452.773 (5)100
C13B—H13B···N2B0.932.442.760 (4)100
C30A—H30A···N4A0.932.452.767 (4)100
C30B—H30B···N4B0.932.452.796 (4)100
Selected geometric parameters (Å, º) top
Cu1A—O1A2.577 (3)N1A—C1A1.425 (4)
Cu1A—O2A1.923 (2)N1A—N2A1.284 (4)
Cu1A—O3A2.761 (3)N2A—C7A1.364 (4)
Cu1A—O4A1.900 (2)N3A—N4A1.278 (4)
Cu1A—N1A1.952 (3)N3A—C18A1.428 (4)
Cu1A—N3A1.962 (3)N4A—C24A1.361 (4)
Cu1B—N3B1.951 (3)O1B—C2B1.369 (5)
Cu1B—O3B2.625 (3)O1B—C17B1.431 (5)
Cu1B—O1B2.679 (3)O2B—C8B1.291 (4)
Cu1B—O2B1.915 (2)O3B—C19B1.374 (6)
Cu1B—O4B1.905 (3)O3B—C34B1.424 (7)
Cu1B—N1B1.957 (3)O4B—C25B1.296 (4)
O1A—C17A1.413 (5)N1B—C1B1.432 (5)
O1A—C2A1.377 (4)N1B—N2B1.285 (4)
O2A—C8A1.289 (4)N2B—C7B1.367 (5)
O3A—C34A1.436 (5)N3B—N4B1.288 (4)
O3A—C19A1.370 (4)N3B—C18B1.431 (5)
O4A—C25A1.294 (4)N4B—C24B1.371 (4)
O1A—Cu1A—O2A118.06 (10)N1A—C1A—C6A122.1 (3)
O1A—Cu1A—O3A140.16 (8)C2B—O1B—C17B116.1 (3)
O1A—Cu1A—O4A92.50 (9)Cu1B—O1B—C2B100.0 (2)
O1A—Cu1A—N1A70.52 (10)Cu1B—O1B—C17B138.3 (3)
O1A—Cu1A—N3A87.04 (10)O1A—C2A—C1A116.4 (3)
O2A—Cu1A—O3A90.46 (9)O1A—C2A—C3A123.7 (3)
O2A—Cu1A—O4A93.91 (10)Cu1B—O2B—C8B122.8 (2)
O2A—Cu1A—N1A88.34 (11)Cu1B—O3B—C19B99.1 (2)
O2A—Cu1A—N3A154.40 (11)Cu1B—O3B—C34B137.8 (3)
O3A—Cu1A—O4A114.01 (9)C19B—O3B—C34B119.1 (4)
O3A—Cu1A—N1A84.17 (10)Cu1B—O4B—C25B122.6 (2)
O3A—Cu1A—N3A65.09 (9)N2A—C7A—C8A124.8 (3)
O4A—Cu1A—N1A161.64 (11)N2A—C7A—C12A114.5 (3)
O4A—Cu1A—N3A89.68 (11)O2A—C8A—C7A124.7 (3)
N1A—Cu1A—N3A96.15 (11)O2A—C8A—C9A118.0 (3)
O1B—Cu1B—N1B67.72 (10)N3A—C18A—C19A116.9 (3)
O1B—Cu1B—N3B80.02 (11)N3A—C18A—C23A122.6 (3)
O2B—Cu1B—O3B89.74 (10)O3A—C19A—C18A115.1 (3)
O2B—Cu1B—O4B92.83 (11)O3A—C19A—C20A125.5 (3)
O2B—Cu1B—N1B90.23 (11)N4A—C24A—C29A114.4 (3)
O2B—Cu1B—N3B156.69 (12)N4A—C24A—C25A125.1 (3)
O3B—Cu1B—O4B114.58 (11)O4A—C25A—C24A124.8 (3)
O3B—Cu1B—N1B88.92 (11)O4A—C25A—C26A117.5 (3)
O3B—Cu1B—N3B68.29 (10)Cu1B—N1B—N2B128.3 (2)
O4B—Cu1B—N1B156.30 (12)Cu1B—N1B—C1B118.3 (2)
O4B—Cu1B—N3B89.61 (12)N2B—N1B—C1B113.1 (3)
N1B—Cu1B—N3B96.78 (12)N1B—N2B—C7B120.5 (3)
O1B—Cu1B—O2B123.06 (10)N4B—N3B—C18B114.8 (3)
O1B—Cu1B—O3B138.05 (10)Cu1B—N3B—N4B128.1 (2)
O1B—Cu1B—O4B91.15 (11)Cu1B—N3B—C18B116.6 (2)
Cu1A—O1A—C17A138.0 (2)N3B—N4B—C24B119.0 (3)
C2A—O1A—C17A118.4 (3)N1B—C1B—C2B117.6 (3)
Cu1A—O1A—C2A101.01 (19)N1B—C1B—C6B123.0 (3)
Cu1A—O2A—C8A119.4 (2)O1B—C2B—C1B115.3 (3)
Cu1A—O3A—C19A98.56 (19)O1B—C2B—C3B125.0 (3)
Cu1A—O3A—C34A135.7 (2)N2B—C7B—C8B125.8 (3)
C19A—O3A—C34A118.2 (3)N2B—C7B—C12B113.6 (3)
Cu1A—O4A—C25A125.4 (2)O2B—C8B—C7B124.7 (3)
Cu1A—N1A—C1A117.8 (2)O2B—C8B—C9B118.2 (3)
N2A—N1A—C1A114.6 (3)N3B—C18B—C19B116.5 (4)
Cu1A—N1A—N2A126.9 (2)N3B—C18B—C23B123.3 (3)
N1A—N2A—C7A119.6 (3)O3B—C19B—C18B115.4 (4)
N4A—N3A—C18A112.1 (3)O3B—C19B—C20B124.9 (4)
Cu1A—N3A—C18A118.5 (2)N4B—C24B—C25B125.2 (3)
Cu1A—N3A—N4A129.3 (2)N4B—C24B—C29B114.1 (3)
N3A—N4A—C24A120.6 (3)O4B—C25B—C24B125.3 (3)
N1A—C1A—C2A117.8 (3)O4B—C25B—C26B116.9 (3)
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
C3B—H3B···O4A0.93002.48003.270 (5)143.00
C13A—H13A···N2A0.93002.45002.773 (5)100.00
C13B—H13B···N2B0.93002.44002.760 (4)100.00
C30A—H30A···N4A0.93002.45002.767 (4)100.00
C30B—H30B···N4B0.93002.45002.796 (4)100.00
 

Acknowledgements

We thank all researchers of the CHEMS Research Unit, University of Constantine, Algeria, for their valuable assistance. Thanks are due to the MESRS (Ministère de l'Enseignement Supérieur et de la Recherche Scientifique, Algérie) for financial support.

References

First citationBruker (2006). APEX2 and SAINT. Bruker AXS Inc., Madison, Wisconsin, USA.  Google Scholar
First citationFarrugia, L. J. (2012). J. Appl. Cryst. 45, 849–854.  Web of Science CrossRef CAS IUCr Journals Google Scholar
First citationGiacovazzo, C., Burla, M. C. & Cascarano, G. (1992). Acta Cryst. A48, 901–906.  CrossRef CAS IUCr Journals Google Scholar
First citationHallas, G. & Choi, J. H. (1999). Dyes Pigm. 40, 119–129.  CrossRef CAS Google Scholar
First citationHo, M. S., Natansohn, A. & Rochon, P. (1995). Macromolecules, 28, 6124–6127.  CrossRef CAS Web of Science Google Scholar
First citationLin, M.-L., Tsai, C.-Y., Li, C.-Y., Huang, B.-H. & Ko, B.-T. (2010). Acta Cryst. E66, m1022.  Web of Science CSD CrossRef IUCr Journals Google Scholar
First citationMillington, K. R., Fincher, K. W. & King, A. L. (2007). Solar Energy Mater. Solar Cells, 91, 1618–1630.  CrossRef CAS Google Scholar
First citationSharma, G. D., Suresh, P., Sharma, S. K. & Roy, M. S. (2008). Synth. Met. 158, 509–515.  Web of Science CrossRef CAS Google Scholar
First citationSheldrick, G. M. (2015). Acta Cryst. C71, 3–8.  Web of Science CrossRef IUCr Journals Google Scholar
First citationSpek, A. L. (2015). Acta Cryst. C71, 9–18.  Web of Science CrossRef IUCr Journals Google Scholar
First citationTai, W.-J., Li, C.-H., Li, C.-Y. & Ko, B.-T. (2010). Acta Cryst. E66, m1315.  Web of Science CSD CrossRef IUCr Journals Google Scholar

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