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The Cu atom in the title zwitterionic complex, [Cu(C6H6N2O3S)2(C3H7NO)2], lies on a centre of inversion in a square plane formed by two N and two O atoms. Adjacent zwitterions are linked by a long Cu—O inter­action of 2.465 (2) Å to form a linear chain that runs along the b axis of the triclinic unit cell. The chain motif is consolidated by N—H...O hydrogen bonds.

Supporting information

cif

Crystallographic Information File (CIF) https://doi.org/10.1107/S1600536806027942/bt2143sup1.cif
Contains datablocks global, I

hkl

Structure factor file (CIF format) https://doi.org/10.1107/S1600536806027942/bt2143Isup2.hkl
Contains datablock I

CCDC reference: 618140

Key indicators

  • Single-crystal X-ray study
  • T = 295 K
  • Mean [sigma](C-C) = 0.004 Å
  • R factor = 0.033
  • wR factor = 0.134
  • Data-to-parameter ratio = 15.1

checkCIF/PLATON results

No syntax errors found



Alert level B PLAT029_ALERT_3_B _diffrn_measured_fraction_theta_full Low ....... 0.95
Alert level C PLAT731_ALERT_1_C Bond Calc 0.85(3), Rep 0.850(10) ...... 3.00 su-Ra N1 -H1N 1.555 1.555 PLAT731_ALERT_1_C Bond Calc 0.86(3), Rep 0.850(10) ...... 3.00 su-Ra N1 -H2N 1.555 1.555 PLAT735_ALERT_1_C D-H Calc 0.86(3), Rep 0.850(10) ...... 3.00 su-Ra N1 -H2N 1.555 1.555 PLAT735_ALERT_1_C D-H Calc 0.85(3), Rep 0.850(10) ...... 3.00 su-Ra N1 -H1N 1.555 1.555 PLAT736_ALERT_1_C H...A Calc 2.16(3), Rep 2.170(10) ...... 3.00 su-Ra H2N -O2 1.555 1.565
0 ALERT level A = In general: serious problem 1 ALERT level B = Potentially serious problem 5 ALERT level C = Check and explain 0 ALERT level G = General alerts; check 5 ALERT type 1 CIF construction/syntax error, inconsistent or missing data 0 ALERT type 2 Indicator that the structure model may be wrong or deficient 1 ALERT type 3 Indicator that the structure quality may be low 0 ALERT type 4 Improvement, methodology, query or suggestion 0 ALERT type 5 Informative message, check

Computing details top

Data collection: SMART (Bruker, 2003); cell refinement: SAINT (Bruker, 2003); data reduction: SAINT; program(s) used to solve structure: SHELXS97 (Sheldrick, 1997); program(s) used to refine structure: SHELXL97 (Sheldrick, 1997); molecular graphics: ORTEPII (Johnson, 1976); software used to prepare material for publication: SHELXL97.

Bis(4-aminobenzenesulfonato-κN)bis(N,N-dimethylformamide-κO)copper(II) top
Crystal data top
[Cu(C6H6N2O3S)2(C3H7NO)2]Z = 1
Mr = 554.09F(000) = 287
Triclinic, P1Dx = 1.655 Mg m3
Hall symbol: -P 1Mo Kα radiation, λ = 0.71073 Å
a = 7.1168 (5) ÅCell parameters from 3041 reflections
b = 8.4491 (6) Åθ = 2.4–28.4°
c = 9.5294 (6) ŵ = 1.22 mm1
α = 87.033 (1)°T = 295 K
β = 77.344 (1)°Plate, green
γ = 84.337 (1)°0.20 × 0.16 × 0.04 mm
V = 556.09 (7) Å3
Data collection top
Bruker SMART APEX area-detector
diffractometer
2426 independent reflections
Radiation source: fine-focus sealed tube2246 reflections with I > 2σ(I)
Graphite monochromatorRint = 0.016
φ and ω scansθmax = 27.5°, θmin = 2.4°
Absorption correction: multi-scan
(SADABS; Sheldrick, 1996)
h = 99
Tmin = 0.797, Tmax = 0.953k = 1010
4574 measured reflectionsl = 1210
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)] = 0.033Hydrogen site location: inferred from neighbouring sites
wR(F2) = 0.134H atoms treated by a mixture of independent and constrained refinement
S = 1.13 w = 1/[σ2(Fo2) + (0.0798P)2 + 0.4598P]
where P = (Fo2 + 2Fc2)/3
2426 reflections(Δ/σ)max = 0.001
161 parametersΔρmax = 0.43 e Å3
2 restraintsΔρmin = 0.40 e Å3
Fractional atomic coordinates and isotropic or equivalent isotropic displacement parameters (Å2) top
xyzUiso*/Ueq
Cu10.50000.50000.50000.0277 (2)
S10.8378 (1)0.25966 (7)0.24513 (7)0.0266 (2)
N10.7723 (3)0.3882 (3)0.4825 (3)0.0272 (5)
N20.4769 (4)0.7176 (3)0.8822 (3)0.0320 (5)
O10.6468 (3)0.3122 (3)0.3104 (2)0.0371 (5)
O20.9907 (3)0.3631 (3)0.2932 (2)0.0365 (5)
O30.8703 (4)0.2379 (3)0.0908 (2)0.0433 (6)
O40.5561 (3)0.6234 (2)0.6565 (2)0.0318 (4)
C10.8380 (4)0.0694 (3)0.3149 (3)0.0253 (5)
C20.9140 (4)0.0548 (3)0.2277 (3)0.0294 (6)
C30.8985 (4)0.2059 (3)0.2842 (3)0.0296 (6)
C40.8081 (4)0.2306 (3)0.4261 (3)0.0243 (5)
C50.7390 (4)0.1042 (3)0.5145 (3)0.0298 (6)
C60.7533 (4)0.0457 (3)0.4595 (3)0.0292 (6)
C70.4648 (4)0.6180 (4)0.7852 (3)0.0337 (6)
C80.5897 (6)0.8538 (4)0.8463 (4)0.0466 (8)
C90.3571 (6)0.7111 (5)1.0269 (4)0.0497 (9)
H1N0.799 (6)0.382 (5)0.565 (2)0.05 (1)*
H2N0.840 (4)0.456 (3)0.429 (3)0.03 (1)*
H20.97500.03790.13220.035*
H30.94920.29020.22620.036*
H50.68290.12030.61100.036*
H60.70650.13050.51870.035*
H70.38300.53750.81320.040*
H8a0.68490.83490.75900.070*
H8b0.65320.86970.92290.070*
H8c0.50580.94700.83320.070*
H9a0.28730.61801.03900.075*
H9b0.26710.80431.04130.075*
H9c0.43770.70681.09590.075*
Atomic displacement parameters (Å2) top
U11U22U33U12U13U23
Cu10.0323 (3)0.0232 (3)0.0297 (3)0.0014 (2)0.0108 (2)0.0098 (2)
S10.0319 (4)0.0217 (3)0.0270 (4)0.0024 (3)0.0074 (3)0.0034 (2)
N10.032 (1)0.022 (1)0.030 (1)0.003 (1)0.010 (1)0.003 (1)
N20.036 (1)0.034 (1)0.027 (1)0.004 (1)0.005 (1)0.007 (1)
O10.035 (1)0.031 (1)0.048 (1)0.011 (1)0.009 (1)0.006 (1)
O20.038 (1)0.030 (1)0.043 (1)0.001 (1)0.014 (1)0.002 (1)
O30.063 (2)0.040 (1)0.027 (1)0.006 (1)0.009 (1)0.005 (1)
O40.034 (1)0.033 (1)0.031 (1)0.001 (1)0.009 (1)0.012 (1)
C10.028 (1)0.023 (1)0.026 (1)0.003 (1)0.007 (1)0.001 (1)
C20.032 (1)0.029 (1)0.024 (1)0.001 (1)0.000 (1)0.001 (1)
C30.032 (1)0.022 (1)0.032 (1)0.002 (1)0.001 (1)0.003 (1)
C40.023 (1)0.022 (1)0.030 (1)0.001 (1)0.009 (1)0.003 (1)
C50.035 (1)0.032 (1)0.022 (1)0.006 (1)0.004 (1)0.002 (1)
C60.037 (1)0.022 (1)0.028 (1)0.006 (1)0.004 (1)0.001 (1)
C70.038 (2)0.030 (1)0.035 (2)0.006 (1)0.010 (1)0.004 (1)
C80.059 (2)0.042 (2)0.041 (2)0.018 (2)0.010 (2)0.011 (1)
C90.054 (2)0.061 (2)0.033 (2)0.008 (2)0.006 (2)0.005 (2)
Geometric parameters (Å, º) top
Cu1—N12.047 (2)C2—C31.396 (4)
Cu1—N1i2.047 (2)C3—C41.381 (4)
Cu1—O1ii2.465 (2)C4—C51.386 (4)
Cu1—O1iii2.465 (2)C5—C61.382 (4)
Cu1—O41.994 (2)N1—H1N0.85 (1)
Cu1—O4i1.994 (2)N1—H2N0.85 (1)
S1—O31.443 (2)C2—H20.93
S1—O21.465 (2)C3—H30.93
S1—O11.467 (2)C5—H50.93
S1—C11.771 (3)C6—H60.93
N1—C41.440 (3)C7—H70.93
N2—C71.304 (4)C8—H8a0.96
N2—C81.452 (4)C8—H8b0.96
N2—C91.455 (4)C8—H8c0.96
O4—C71.256 (4)C9—H9a0.96
C1—C21.382 (4)C9—H9b0.96
C1—C61.394 (4)C9—H9c0.96
O1ii—Cu1—O1iii180C5—C6—C1119.7 (2)
O1ii—Cu1—O492.87 (8)O4—C7—N2124.5 (3)
O1ii—Cu1—O4i87.13 (8)C4—N1—H1N107 (3)
O1ii—Cu1—N186.57 (9)Cu1—N1—H1N108 (3)
O1ii—Cu1—N1i93.43 (8)C4—N1—H2N113 (2)
O4—Cu1—O4i180Cu1—N1—H2N101 (2)
O4—Cu1—N186.64 (9)H1N—N1—H2N110 (4)
O4—Cu1—N1i93.36 (9)C1—C2—H2120.3
N1—Cu1—N1i180C3—C2—H2120.3
O3—S1—O2113.4 (2)C4—C3—H3119.9
O3—S1—O1113.3 (2)C2—C3—H3119.9
O2—S1—O1110.8 (1)C6—C5—H5119.9
O3—S1—C1106.6 (1)C4—C5—H5119.9
O2—S1—C1107.0 (1)C5—C6—H6120.1
O1—S1—C1105.2 (1)C1—C6—H6120.1
C4—N1—Cu1117.5 (2)O4—C7—H7117.7
C7—N2—C8121.7 (3)N2—C7—H7117.7
C7—N2—C9121.6 (3)N2—C8—H8a109.5
C8—N2—C9116.2 (3)N2—C8—H8b109.5
C7—O4—Cu1124.3 (2)H8a—C8—H8b109.5
C2—C1—C6120.3 (2)N2—C8—H8c109.5
C2—C1—S1121.2 (2)H8a—C8—H8c109.5
C6—C1—S1118.4 (2)H8b—C8—H8c109.5
C1—C2—C3119.4 (2)N2—C9—H9a109.5
C4—C3—C2120.2 (2)N2—C9—H9b109.5
C3—C4—C5120.1 (2)H9a—C9—H9b109.5
C3—C4—N1121.1 (2)N2—C9—H9c109.5
C5—C4—N1118.7 (2)H9a—C9—H9c109.5
C6—C5—C4120.1 (3)H9b—C9—H9c109.5
O4i—Cu1—N1—C425.8 (2)S1—C1—C2—C3175.2 (2)
O4—Cu1—N1—C4154.2 (2)C1—C2—C3—C40.1 (4)
O1iii—Cu1—N1—C467.3 (2)C2—C3—C4—C52.5 (4)
O1ii—Cu1—N1—C4112.7 (2)C2—C3—C4—N1173.4 (3)
N1i—Cu1—O4—C762.9 (2)Cu1—N1—C4—C399.8 (3)
N1—Cu1—O4—C7117.1 (2)Cu1—N1—C4—C576.1 (3)
O1iii—Cu1—O4—C723.5 (2)C3—C4—C5—C62.6 (4)
O1ii—Cu1—O4—C7156.5 (2)N1—C4—C5—C6173.3 (3)
O3—S1—C1—C217.0 (3)C4—C5—C6—C10.2 (4)
O2—S1—C1—C2104.6 (2)C2—C1—C6—C52.4 (4)
O1—S1—C1—C2137.5 (2)S1—C1—C6—C5175.4 (2)
O3—S1—C1—C6160.8 (2)Cu1—O4—C7—N2167.4 (2)
O2—S1—C1—C677.6 (2)C8—N2—C7—O44.5 (5)
O1—S1—C1—C640.3 (3)C9—N2—C7—O4175.7 (3)
C6—C1—C2—C32.5 (4)
Symmetry codes: (i) x+1, y+1, z+1; (ii) x, y+1, z; (iii) x+1, y, z+1.
Hydrogen-bond geometry (Å, º) top
D—H···AD—HH···AD···AD—H···A
N1—H2N···O2ii0.85 (1)2.17 (1)3.018 (3)176 (3)
N1—H1N···O2iv0.85 (1)2.21 (2)2.987 (3)152 (4)
Symmetry codes: (ii) x, y+1, z; (iv) x+2, y, z+1.
 

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