metal-organic compounds
Dichlorido{4-cyclohexyl-1-[1-(2-pyridyl-κN)ethylidene]thiosemicarbazidato-κ2N1,S}phenyltin(IV)
aFaculty of Resource Science and Technology, Universiti Malaysia Sarawak, 94300 Kota Samarahan, Sarawak, Malaysia, bFaculty of Science, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia, and cDepartment of Chemistry, University of Malaya, 50603 Kuala Lumpur, Malaysia
*Correspondence e-mail: edward.tiekink@gmail.com
The SnIV atom in the title compound, [Sn(C6H5)(C14H19N4S)Cl2], exists within a distorted octahedral geometry defined by the N,N′,S-tridentate monodeprotonated Schiff base ligand, two mutually trans Cl atoms, and the ipso-C atom of the Sn-bound phenyl group; the latter is trans to the azo-N atom. The greatest distortion from the ideal geometry is found in the nominally trans angle formed by the S and pyridyl-N atoms at Sn [151.03 (4)°]. With the exception of the cyclohexyl group (chair form), the Schiff base ligand is almost planar (r.m.s. deviation of non-H and Sn atoms = 0.053 Å). The nearly orthogonal orientation of the Sn-bound phenyl group [N—Sn—C—C torsion angle = 70.8 (5)°] to the planar portion of the Schiff base allows for the formation of significant intramolecular C—H⋯Cl interactions which preclude the Cl atoms from participating in N—H⋯Cl hydrogen bonds. Instead, C—H⋯π contacts, involving methylene H and the Sn-bound phenyl group, lead to the formation of supramolecular chains that pack in the bc plane. Connections between these layers are of the type C—H⋯Cl.
Experimental
Crystal data
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Refinement
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Data collection: CrysAlis CCD (Oxford Diffraction, 2002); cell CrysAlis RED (Oxford Diffraction, 2002); data reduction: CrysAlis RED; program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: ORTEP-3 (Farrugia, 1997) and DIAMOND (Brandenburg, 2006); software used to prepare material for publication: publCIF (Westrip, 2010).
Supporting information
https://doi.org/10.1107/S1600536810044247/hb5715sup1.cif
contains datablocks global, I. DOI:Structure factors: contains datablock I. DOI: https://doi.org/10.1107/S1600536810044247/hb5715Isup2.hkl
2-Acetylpyridine-N-cyclohexyl thiosemicarbazone (0.28 g, 1.0 mmol) was dissolved in absolute methanol (10 ml) in a Schlenk round bottom flask under a nitrogen atmosphere and stirred for 30 min. Then, a 10 ml me thanolic solution of phenyltin(IV) trichloride (0.302 g, 1.0 mmol) was added drop wise while stirring which resulted in the formation of a yellow solution. The reaction mixture was refluxed for 4 h. and then cooled to room temperature. Yellow micro crystals of (I) were obtained from the slow evaporation of the solution at room temperature. The micro crystals were filtered off, washed with a small amount of cool methanol and dried in vacuo over silica gel. Light-yellow crystals were obtained from the slow evaporation of a chloroform/methanol (1/1) solution of (I) held at room temperature. Yield: 0.45 g, 77%: M.pt.: 523–525 K. Anal. Calc. for C20H24Cl2N4SSn: C, 44.30; H, 4.46; N, 10.33%. Found: C, 44.12; H, 4.27; N, 10.18%.
Carbon-bound H-atoms were placed in calculated positions (C–H = 0.95 to 1.00 Å) and were included in the
in the riding model approximation, with Uiso(H) set to 1.2–1.5Uequiv(C). The N-bound H atom was located from a difference map and refined with the distance restraint N–H = 0.88±0.01 Å, and with Uiso(H) = 1.2Ueq(N).The title compound, (I), is the phenyltin derivative of the recently described structure of dichlorido{4-cyclohexyl-1-[1-(2-pyridyl-κN)ethylidene]thiosemicarbazidato-κ2N1,S}methyltin(IV) (Salam et al., 2010).
The Sn atom in (I), Fig. 1, exists within a six atom CCl2N2S donor set defined by the tridentate monodeprotonated Schiff base ligand, two mutually trans chlorido atoms, and the ispo-C atom of the Sn-bound phenyl group which is trans to the azo-N atom, Table 1. Distortions from the ideal octahedral geometry are ascribed primarily to the restricted bite distances formed by the Schiff base which results in an angle of 151.03 (4) ° for the nominally trans S1—Sn—N1 angle. The disposition of donor atoms resembles that found in the structure of the methyltin derivative (Salam et al., 2010). With the exception of the cyclohexyl group, which adopts a chair conformation, the Schiff base ligand is planar. Thus, the r.m.s. deviation from the least-squares plane through the 15 non-H atoms in the conjugated part of the ligand including the Sn and methine-C15 atoms, i.e. Sn,S1,N1–N4,C1–C9, is 0.053 Å. The Sn-bound phenyl group occupies a position almost orthogonal to the chelate rings as seen in the N2—Sn—C15—C16 torsion angle of 70.8 (5) Å.
In the crystal, supramolecular chains along the b axis are mediated by C—H···π interactions involving a methylene-H interacting with the Sn-bound phenyl group, Table 1. The chains pack in the bc plane and connections between the layers stacked along the a axis are of the type C—H···Cl, Fig. 2 and Table 1. The non-participation of the N—H atom in forming a significant intermolecular interaction contrasts the formation of N—H···Cl interactions in the methyltin derivative (Salam et al., 2010). It is noted that the orthogonal orientation of the Sn-bound phenyl group allows for the formation of close intramolecular C—H···Cl contacts, Table 1, which probably deactivate the chlorido atoms from forming significant hydrogen bonds. Further, it is noted that the C—H···π interactions present in (I) involves the Sn-bound phenyl group as as the acceptor, and that these are not possible in the methyltin derivative. Together, these factors explain the absence of significant hydrogen bonding interactions involving the N—H atom.
For the structure of the methyltin derivative, see: Salam et al. (2010).
Data collection: CrysAlis CCD (Oxford Diffraction, 2002); cell
CrysAlis RED (Oxford Diffraction, 2002); data reduction: CrysAlis RED (Oxford Diffraction, 2002); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: ORTEP-3 (Farrugia, 1997) and DIAMOND (Brandenburg, 2006); software used to prepare material for publication: publCIF (Westrip, 2010).[Sn(C6H5)(C14H19N4S)Cl2] | F(000) = 1088 |
Mr = 542.08 | Dx = 1.625 Mg m−3 |
Monoclinic, P21/n | Mo Kα radiation, λ = 0.71073 Å |
Hall symbol: -P 2yn | Cell parameters from 17836 reflections |
a = 11.5213 (2) Å | θ = 2.4–28.9° |
b = 13.3795 (2) Å | µ = 1.50 mm−1 |
c = 15.2648 (2) Å | T = 150 K |
β = 109.630 (2)° | Prism, orange |
V = 2216.30 (6) Å3 | 0.37 × 0.21 × 0.15 mm |
Z = 4 |
Area diffractometer | 3642 reflections with I > 2σ(I) |
Graphite monochromator | Rint = 0.034 |
ω/2θ scans | θmax = 25.0°, θmin = 2.4° |
Absorption correction: multi-scan (CrysAlis RED; Oxford Diffraction, 2002) | h = −13→13 |
Tmin = 0.730, Tmax = 0.798 | k = −15→15 |
23984 measured reflections | l = −18→18 |
3900 independent reflections |
Refinement on F2 | Primary atom site location: structure-invariant direct methods |
Least-squares matrix: full | Secondary atom site location: difference Fourier map |
R[F2 > 2σ(F2)] = 0.018 | Hydrogen site location: inferred from neighbouring sites |
wR(F2) = 0.047 | H atoms treated by a mixture of independent and constrained refinement |
S = 1.02 | w = 1/[σ2(Fo2) + (0.0232P)2 + 1.3698P] where P = (Fo2 + 2Fc2)/3 |
3900 reflections | (Δ/σ)max = 0.003 |
257 parameters | Δρmax = 0.30 e Å−3 |
1 restraint | Δρmin = −0.45 e Å−3 |
[Sn(C6H5)(C14H19N4S)Cl2] | V = 2216.30 (6) Å3 |
Mr = 542.08 | Z = 4 |
Monoclinic, P21/n | Mo Kα radiation |
a = 11.5213 (2) Å | µ = 1.50 mm−1 |
b = 13.3795 (2) Å | T = 150 K |
c = 15.2648 (2) Å | 0.37 × 0.21 × 0.15 mm |
β = 109.630 (2)° |
Area diffractometer | 3900 independent reflections |
Absorption correction: multi-scan (CrysAlis RED; Oxford Diffraction, 2002) | 3642 reflections with I > 2σ(I) |
Tmin = 0.730, Tmax = 0.798 | Rint = 0.034 |
23984 measured reflections |
R[F2 > 2σ(F2)] = 0.018 | 1 restraint |
wR(F2) = 0.047 | H atoms treated by a mixture of independent and constrained refinement |
S = 1.02 | Δρmax = 0.30 e Å−3 |
3900 reflections | Δρmin = −0.45 e Å−3 |
257 parameters |
Geometry. All s.u.'s (except the s.u. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell s.u.'s are taken into account individually in the estimation of s.u.'s in distances, angles and torsion angles; correlations between s.u.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell s.u.'s is used for estimating s.u.'s involving l.s. planes. |
Refinement. Refinement of F2 against ALL reflections. The weighted R-factor wR and goodness of fit S are based on F2, conventional R-factors R are based on F, with F set to zero for negative F2. The threshold expression of F2 > 2σ(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. |
x | y | z | Uiso*/Ueq | ||
Sn | 0.473542 (11) | 0.564452 (9) | 0.716818 (8) | 0.01429 (6) | |
Cl1 | 0.25305 (5) | 0.55811 (4) | 0.62427 (4) | 0.02697 (12) | |
Cl2 | 0.67571 (4) | 0.56343 (3) | 0.84773 (3) | 0.02149 (11) | |
S1 | 0.52690 (6) | 0.41751 (4) | 0.63924 (4) | 0.02665 (13) | |
N1 | 0.39962 (14) | 0.63184 (11) | 0.82288 (10) | 0.0162 (3) | |
N2 | 0.43068 (15) | 0.43990 (10) | 0.79821 (11) | 0.0163 (3) | |
N3 | 0.45002 (15) | 0.34299 (11) | 0.78079 (11) | 0.0186 (3) | |
N4 | 0.51413 (16) | 0.23328 (12) | 0.69436 (11) | 0.0214 (4) | |
H4N | 0.5435 (19) | 0.2243 (16) | 0.6499 (11) | 0.026* | |
C1 | 0.36701 (17) | 0.56662 (13) | 0.87825 (13) | 0.0160 (4) | |
C2 | 0.31498 (17) | 0.60120 (15) | 0.94234 (13) | 0.0198 (4) | |
H2 | 0.2945 | 0.5557 | 0.9827 | 0.024* | |
C3 | 0.29312 (18) | 0.70261 (15) | 0.94712 (13) | 0.0230 (4) | |
H3 | 0.2559 | 0.7269 | 0.9898 | 0.028* | |
C4 | 0.32570 (19) | 0.76806 (15) | 0.88952 (14) | 0.0242 (4) | |
H4 | 0.3110 | 0.8377 | 0.8916 | 0.029* | |
C5 | 0.38022 (18) | 0.72975 (14) | 0.82871 (13) | 0.0203 (4) | |
H5 | 0.4047 | 0.7744 | 0.7898 | 0.024* | |
C6 | 0.38569 (17) | 0.46014 (14) | 0.86329 (13) | 0.0166 (4) | |
C7 | 0.3507 (2) | 0.38016 (14) | 0.91856 (14) | 0.0240 (4) | |
H7A | 0.2608 | 0.3740 | 0.8978 | 0.036* | |
H7B | 0.3817 | 0.3978 | 0.9847 | 0.036* | |
H7C | 0.3867 | 0.3164 | 0.9093 | 0.036* | |
C8 | 0.49310 (18) | 0.32842 (14) | 0.71163 (12) | 0.0193 (4) | |
C9 | 0.49837 (18) | 0.14827 (13) | 0.75032 (13) | 0.0186 (4) | |
H9 | 0.4180 | 0.1560 | 0.7613 | 0.022* | |
C10 | 0.49480 (18) | 0.05184 (13) | 0.69666 (14) | 0.0179 (4) | |
H10A | 0.5731 | 0.0436 | 0.6841 | 0.022* | |
H10B | 0.4268 | 0.0548 | 0.6363 | 0.022* | |
C11 | 0.47560 (19) | −0.03703 (14) | 0.75323 (14) | 0.0213 (4) | |
H11A | 0.3950 | −0.0304 | 0.7626 | 0.026* | |
H11B | 0.4745 | −0.0996 | 0.7184 | 0.026* | |
C12 | 0.5780 (2) | −0.04246 (15) | 0.84755 (15) | 0.0301 (5) | |
H12A | 0.6577 | −0.0555 | 0.8383 | 0.036* | |
H12B | 0.5615 | −0.0985 | 0.8841 | 0.036* | |
C13 | 0.5861 (2) | 0.05525 (15) | 0.90122 (15) | 0.0305 (5) | |
H13A | 0.5103 | 0.0639 | 0.9173 | 0.037* | |
H13B | 0.6571 | 0.0522 | 0.9599 | 0.037* | |
C14 | 0.6013 (2) | 0.14412 (15) | 0.84392 (14) | 0.0272 (5) | |
H14A | 0.6011 | 0.2066 | 0.8786 | 0.033* | |
H14B | 0.6816 | 0.1392 | 0.8339 | 0.033* | |
C15 | 0.51354 (17) | 0.69707 (13) | 0.65203 (12) | 0.0151 (4) | |
C16 | 0.62574 (18) | 0.74626 (14) | 0.68942 (14) | 0.0204 (4) | |
H16 | 0.6849 | 0.7224 | 0.7453 | 0.024* | |
C17 | 0.65198 (19) | 0.83006 (14) | 0.64572 (15) | 0.0242 (4) | |
H17 | 0.7292 | 0.8628 | 0.6714 | 0.029* | |
C18 | 0.5663 (2) | 0.86581 (14) | 0.56524 (14) | 0.0245 (5) | |
H18 | 0.5845 | 0.9231 | 0.5355 | 0.029* | |
C19 | 0.45379 (19) | 0.81846 (15) | 0.52775 (13) | 0.0242 (4) | |
H19 | 0.3943 | 0.8439 | 0.4728 | 0.029* | |
C20 | 0.42738 (18) | 0.73337 (14) | 0.57055 (13) | 0.0199 (4) | |
H20 | 0.3506 | 0.7002 | 0.5441 | 0.024* |
U11 | U22 | U33 | U12 | U13 | U23 | |
Sn | 0.01933 (9) | 0.01020 (8) | 0.01541 (8) | −0.00154 (5) | 0.00855 (6) | −0.00036 (4) |
Cl1 | 0.0224 (3) | 0.0325 (3) | 0.0231 (3) | −0.0101 (2) | 0.0038 (2) | −0.0018 (2) |
Cl2 | 0.0195 (2) | 0.0233 (3) | 0.0212 (2) | 0.00270 (18) | 0.00619 (19) | 0.00428 (18) |
S1 | 0.0507 (4) | 0.0124 (2) | 0.0274 (3) | −0.0002 (2) | 0.0270 (3) | −0.0005 (2) |
N1 | 0.0174 (8) | 0.0144 (8) | 0.0174 (8) | −0.0014 (6) | 0.0068 (6) | −0.0016 (6) |
N2 | 0.0219 (9) | 0.0122 (8) | 0.0161 (8) | −0.0020 (6) | 0.0081 (7) | −0.0011 (6) |
N3 | 0.0283 (9) | 0.0094 (7) | 0.0211 (8) | −0.0005 (7) | 0.0122 (7) | −0.0015 (6) |
N4 | 0.0340 (10) | 0.0133 (8) | 0.0220 (9) | 0.0000 (7) | 0.0163 (8) | −0.0012 (7) |
C1 | 0.0135 (9) | 0.0182 (10) | 0.0153 (9) | −0.0033 (7) | 0.0037 (7) | −0.0016 (7) |
C2 | 0.0200 (10) | 0.0242 (10) | 0.0162 (9) | −0.0029 (8) | 0.0074 (8) | −0.0020 (8) |
C3 | 0.0213 (10) | 0.0274 (11) | 0.0226 (10) | −0.0012 (9) | 0.0102 (8) | −0.0098 (8) |
C4 | 0.0271 (11) | 0.0163 (10) | 0.0290 (11) | 0.0008 (8) | 0.0094 (9) | −0.0064 (8) |
C5 | 0.0240 (10) | 0.0144 (9) | 0.0228 (10) | −0.0025 (8) | 0.0081 (8) | −0.0021 (8) |
C6 | 0.0173 (9) | 0.0166 (9) | 0.0154 (9) | −0.0020 (8) | 0.0048 (8) | 0.0004 (7) |
C7 | 0.0318 (11) | 0.0207 (10) | 0.0248 (10) | −0.0027 (9) | 0.0166 (9) | 0.0026 (8) |
C8 | 0.0255 (10) | 0.0139 (9) | 0.0184 (9) | 0.0000 (8) | 0.0072 (8) | −0.0010 (7) |
C9 | 0.0241 (10) | 0.0132 (9) | 0.0199 (9) | −0.0015 (8) | 0.0094 (8) | 0.0003 (8) |
C10 | 0.0208 (10) | 0.0145 (9) | 0.0198 (10) | 0.0009 (8) | 0.0085 (8) | −0.0012 (7) |
C11 | 0.0271 (11) | 0.0128 (9) | 0.0270 (11) | −0.0035 (8) | 0.0129 (9) | −0.0024 (8) |
C12 | 0.0369 (13) | 0.0184 (10) | 0.0322 (12) | −0.0001 (9) | 0.0080 (10) | 0.0088 (9) |
C13 | 0.0373 (13) | 0.0275 (12) | 0.0212 (11) | −0.0025 (9) | 0.0024 (10) | 0.0039 (9) |
C14 | 0.0309 (11) | 0.0200 (10) | 0.0261 (11) | −0.0066 (9) | 0.0035 (9) | −0.0006 (8) |
C15 | 0.0206 (9) | 0.0108 (8) | 0.0183 (9) | 0.0021 (7) | 0.0121 (8) | −0.0005 (7) |
C16 | 0.0197 (10) | 0.0174 (9) | 0.0256 (10) | 0.0028 (8) | 0.0096 (8) | 0.0025 (8) |
C17 | 0.0246 (10) | 0.0153 (9) | 0.0380 (12) | −0.0016 (8) | 0.0173 (9) | 0.0002 (9) |
C18 | 0.0379 (12) | 0.0142 (9) | 0.0322 (11) | 0.0037 (9) | 0.0261 (10) | 0.0057 (8) |
C19 | 0.0347 (12) | 0.0226 (10) | 0.0197 (10) | 0.0100 (9) | 0.0150 (9) | 0.0064 (8) |
C20 | 0.0227 (10) | 0.0194 (10) | 0.0196 (9) | 0.0017 (8) | 0.0096 (8) | −0.0005 (8) |
Sn—Cl1 | 2.4587 (5) | C9—C10 | 1.521 (2) |
Sn—Cl2 | 2.5083 (5) | C9—C14 | 1.520 (3) |
Sn—S1 | 2.4768 (5) | C9—H9 | 1.0000 |
Sn—N1 | 2.2552 (15) | C10—C11 | 1.529 (3) |
Sn—N2 | 2.2309 (15) | C10—H10A | 0.9900 |
Sn—C15 | 2.1552 (17) | C10—H10B | 0.9900 |
S1—C8 | 1.7558 (19) | C11—C12 | 1.526 (3) |
N1—C5 | 1.337 (2) | C11—H11A | 0.9900 |
N1—C1 | 1.353 (2) | C11—H11B | 0.9900 |
N2—C6 | 1.294 (2) | C12—C13 | 1.529 (3) |
N2—N3 | 1.357 (2) | C12—H12A | 0.9900 |
N3—C8 | 1.323 (2) | C12—H12B | 0.9900 |
N4—C8 | 1.338 (2) | C13—C14 | 1.520 (3) |
N4—C9 | 1.470 (2) | C13—H13A | 0.9900 |
N4—H4N | 0.863 (19) | C13—H13B | 0.9900 |
C1—C2 | 1.387 (3) | C14—H14A | 0.9900 |
C1—C6 | 1.470 (3) | C14—H14B | 0.9900 |
C2—C3 | 1.386 (3) | C15—C16 | 1.391 (3) |
C2—H2 | 0.9500 | C15—C20 | 1.392 (3) |
C3—C4 | 1.379 (3) | C16—C17 | 1.389 (3) |
C3—H3 | 0.9500 | C16—H16 | 0.9500 |
C4—C5 | 1.382 (3) | C17—C18 | 1.378 (3) |
C4—H4 | 0.9500 | C17—H17 | 0.9500 |
C5—H5 | 0.9500 | C18—C19 | 1.382 (3) |
C6—C7 | 1.499 (3) | C18—H18 | 0.9500 |
C7—H7A | 0.9800 | C19—C20 | 1.396 (3) |
C7—H7B | 0.9800 | C19—H19 | 0.9500 |
C7—H7C | 0.9800 | C20—H20 | 0.9500 |
C15—Sn—N2 | 172.75 (6) | N4—C9—C14 | 111.40 (16) |
C15—Sn—N1 | 101.00 (6) | C10—C9—C14 | 110.28 (16) |
N2—Sn—N1 | 72.01 (5) | N4—C9—H9 | 108.6 |
C15—Sn—Cl1 | 95.95 (5) | C10—C9—H9 | 108.6 |
N2—Sn—Cl1 | 85.12 (4) | C14—C9—H9 | 108.6 |
N1—Sn—Cl1 | 81.94 (4) | C9—C10—C11 | 109.78 (16) |
C15—Sn—S1 | 107.97 (5) | C9—C10—H10A | 109.7 |
N2—Sn—S1 | 79.07 (4) | C11—C10—H10A | 109.7 |
N1—Sn—S1 | 151.03 (4) | C9—C10—H10B | 109.7 |
Cl1—Sn—S1 | 94.152 (19) | C11—C10—H10B | 109.7 |
C15—Sn—Cl2 | 94.91 (5) | H10A—C10—H10B | 108.2 |
N2—Sn—Cl2 | 82.66 (4) | C12—C11—C10 | 110.94 (16) |
N1—Sn—Cl2 | 84.48 (4) | C12—C11—H11A | 109.5 |
Cl1—Sn—Cl2 | 164.001 (18) | C10—C11—H11A | 109.5 |
S1—Sn—Cl2 | 93.632 (18) | C12—C11—H11B | 109.5 |
C8—S1—Sn | 95.44 (6) | C10—C11—H11B | 109.5 |
C5—N1—C1 | 120.18 (16) | H11A—C11—H11B | 108.0 |
C5—N1—Sn | 123.46 (13) | C11—C12—C13 | 110.71 (17) |
C1—N1—Sn | 116.22 (11) | C11—C12—H12A | 109.5 |
C6—N2—N3 | 119.00 (15) | C13—C12—H12A | 109.5 |
C6—N2—Sn | 119.47 (12) | C11—C12—H12B | 109.5 |
N3—N2—Sn | 121.53 (11) | C13—C12—H12B | 109.5 |
C8—N3—N2 | 115.31 (15) | H12A—C12—H12B | 108.1 |
C8—N4—C9 | 123.75 (16) | C14—C13—C12 | 111.01 (18) |
C8—N4—H4N | 115.6 (15) | C14—C13—H13A | 109.4 |
C9—N4—H4N | 120.5 (14) | C12—C13—H13A | 109.4 |
N1—C1—C2 | 120.13 (16) | C14—C13—H13B | 109.4 |
N1—C1—C6 | 116.24 (16) | C12—C13—H13B | 109.4 |
C2—C1—C6 | 123.59 (17) | H13A—C13—H13B | 108.0 |
C1—C2—C3 | 119.52 (18) | C9—C14—C13 | 111.42 (16) |
C1—C2—H2 | 120.2 | C9—C14—H14A | 109.3 |
C3—C2—H2 | 120.2 | C13—C14—H14A | 109.3 |
C4—C3—C2 | 119.64 (18) | C9—C14—H14B | 109.3 |
C4—C3—H3 | 120.2 | C13—C14—H14B | 109.3 |
C2—C3—H3 | 120.2 | H14A—C14—H14B | 108.0 |
C3—C4—C5 | 118.37 (18) | C16—C15—C20 | 119.14 (17) |
C3—C4—H4 | 120.8 | C16—C15—Sn | 120.92 (13) |
C5—C4—H4 | 120.8 | C20—C15—Sn | 119.93 (13) |
N1—C5—C4 | 122.13 (18) | C15—C16—C17 | 120.47 (18) |
N1—C5—H5 | 118.9 | C15—C16—H16 | 119.8 |
C4—C5—H5 | 118.9 | C17—C16—H16 | 119.8 |
N2—C6—C1 | 116.06 (16) | C18—C17—C16 | 120.14 (19) |
N2—C6—C7 | 122.37 (17) | C18—C17—H17 | 119.9 |
C1—C6—C7 | 121.55 (17) | C16—C17—H17 | 119.9 |
C6—C7—H7A | 109.5 | C17—C18—C19 | 120.10 (18) |
C6—C7—H7B | 109.5 | C17—C18—H18 | 119.9 |
H7A—C7—H7B | 109.5 | C19—C18—H18 | 119.9 |
C6—C7—H7C | 109.5 | C18—C19—C20 | 120.10 (18) |
H7A—C7—H7C | 109.5 | C18—C19—H19 | 120.0 |
H7B—C7—H7C | 109.5 | C20—C19—H19 | 120.0 |
N3—C8—N4 | 116.01 (17) | C15—C20—C19 | 120.03 (18) |
N3—C8—S1 | 128.61 (14) | C15—C20—H20 | 120.0 |
N4—C8—S1 | 115.38 (14) | C19—C20—H20 | 120.0 |
N4—C9—C10 | 109.25 (15) | ||
C15—Sn—S1—C8 | 176.61 (8) | N3—N2—C6—C7 | −1.8 (3) |
N2—Sn—S1—C8 | −1.55 (8) | Sn—N2—C6—C7 | 177.87 (14) |
N1—Sn—S1—C8 | −4.91 (11) | N1—C1—C6—N2 | −0.4 (3) |
Cl1—Sn—S1—C8 | −85.76 (7) | C2—C1—C6—N2 | 177.22 (17) |
Cl2—Sn—S1—C8 | 80.26 (7) | N1—C1—C6—C7 | −178.61 (17) |
C15—Sn—N1—C5 | 5.52 (16) | C2—C1—C6—C7 | −1.0 (3) |
N2—Sn—N1—C5 | −176.48 (16) | N2—N3—C8—N4 | 179.18 (16) |
Cl1—Sn—N1—C5 | −89.02 (15) | N2—N3—C8—S1 | −0.7 (3) |
S1—Sn—N1—C5 | −173.00 (11) | C9—N4—C8—N3 | −3.4 (3) |
Cl2—Sn—N1—C5 | 99.47 (15) | C9—N4—C8—S1 | 176.47 (14) |
C15—Sn—N1—C1 | −178.78 (13) | Sn—S1—C8—N3 | 1.86 (19) |
N2—Sn—N1—C1 | −0.78 (12) | Sn—S1—C8—N4 | −177.98 (14) |
Cl1—Sn—N1—C1 | 86.68 (12) | C8—N4—C9—C10 | 164.24 (18) |
S1—Sn—N1—C1 | 2.70 (18) | C8—N4—C9—C14 | −73.7 (2) |
Cl2—Sn—N1—C1 | −84.83 (12) | N4—C9—C10—C11 | −178.77 (16) |
C15—Sn—N2—C6 | 16.3 (6) | C14—C9—C10—C11 | 58.5 (2) |
N1—Sn—N2—C6 | 0.57 (14) | C9—C10—C11—C12 | −58.4 (2) |
Cl1—Sn—N2—C6 | −82.53 (14) | C10—C11—C12—C13 | 56.4 (2) |
S1—Sn—N2—C6 | −177.72 (15) | C11—C12—C13—C14 | −54.7 (3) |
Cl2—Sn—N2—C6 | 87.12 (14) | N4—C9—C14—C13 | −179.10 (17) |
C15—Sn—N2—N3 | −164.1 (4) | C10—C9—C14—C13 | −57.6 (2) |
N1—Sn—N2—N3 | −179.81 (15) | C12—C13—C14—C9 | 55.6 (3) |
Cl1—Sn—N2—N3 | 97.10 (13) | N2—Sn—C15—C16 | 70.8 (5) |
S1—Sn—N2—N3 | 1.90 (13) | N1—Sn—C15—C16 | 86.01 (15) |
Cl2—Sn—N2—N3 | −93.26 (13) | Cl1—Sn—C15—C16 | 168.92 (14) |
C6—N2—N3—C8 | 178.28 (17) | S1—Sn—C15—C16 | −94.74 (14) |
Sn—N2—N3—C8 | −1.3 (2) | Cl2—Sn—C15—C16 | 0.69 (14) |
C5—N1—C1—C2 | −1.0 (3) | N2—Sn—C15—C20 | −110.5 (5) |
Sn—N1—C1—C2 | −176.82 (14) | N1—Sn—C15—C20 | −95.31 (14) |
C5—N1—C1—C6 | 176.77 (17) | Cl1—Sn—C15—C20 | −12.40 (14) |
Sn—N1—C1—C6 | 0.9 (2) | S1—Sn—C15—C20 | 83.93 (14) |
N1—C1—C2—C3 | 2.0 (3) | Cl2—Sn—C15—C20 | 179.37 (13) |
C6—C1—C2—C3 | −175.53 (18) | C20—C15—C16—C17 | −0.5 (3) |
C1—C2—C3—C4 | −1.4 (3) | Sn—C15—C16—C17 | 178.20 (14) |
C2—C3—C4—C5 | −0.3 (3) | C15—C16—C17—C18 | 0.6 (3) |
C1—N1—C5—C4 | −0.8 (3) | C16—C17—C18—C19 | 0.1 (3) |
Sn—N1—C5—C4 | 174.74 (14) | C17—C18—C19—C20 | −1.0 (3) |
C3—C4—C5—N1 | 1.4 (3) | C16—C15—C20—C19 | −0.4 (3) |
N3—N2—C6—C1 | −179.92 (15) | Sn—C15—C20—C19 | −179.10 (13) |
Sn—N2—C6—C1 | −0.3 (2) | C18—C19—C20—C15 | 1.1 (3) |
Cg1 is the centroid of benzene ring C15–C20. |
D—H···A | D—H | H···A | D···A | D—H···A |
C11—H11B···Cg1i | 0.99 | 2.60 | 3.522 (2) | 155 |
C13—H13B···Cl1ii | 0.99 | 2.80 | 3.632 (2) | 142 |
C16—H16···Cl2 | 0.95 | 2.66 | 3.350 (2) | 130 |
C20—H20···Cl1 | 0.95 | 2.70 | 3.363 (2) | 127 |
Symmetry codes: (i) x, y−1, z; (ii) x+1/2, −y+1/2, z+1/2. |
Experimental details
Crystal data | |
Chemical formula | [Sn(C6H5)(C14H19N4S)Cl2] |
Mr | 542.08 |
Crystal system, space group | Monoclinic, P21/n |
Temperature (K) | 150 |
a, b, c (Å) | 11.5213 (2), 13.3795 (2), 15.2648 (2) |
β (°) | 109.630 (2) |
V (Å3) | 2216.30 (6) |
Z | 4 |
Radiation type | Mo Kα |
µ (mm−1) | 1.50 |
Crystal size (mm) | 0.37 × 0.21 × 0.15 |
Data collection | |
Diffractometer | Area |
Absorption correction | Multi-scan (CrysAlis RED; Oxford Diffraction, 2002) |
Tmin, Tmax | 0.730, 0.798 |
No. of measured, independent and observed [I > 2σ(I)] reflections | 23984, 3900, 3642 |
Rint | 0.034 |
(sin θ/λ)max (Å−1) | 0.595 |
Refinement | |
R[F2 > 2σ(F2)], wR(F2), S | 0.018, 0.047, 1.02 |
No. of reflections | 3900 |
No. of parameters | 257 |
No. of restraints | 1 |
H-atom treatment | H atoms treated by a mixture of independent and constrained refinement |
Δρmax, Δρmin (e Å−3) | 0.30, −0.45 |
Computer programs: CrysAlis CCD (Oxford Diffraction, 2002), CrysAlis RED (Oxford Diffraction, 2002), SHELXS97 (Sheldrick, 2008), SHELXL97 (Sheldrick, 2008), ORTEP-3 (Farrugia, 1997) and DIAMOND (Brandenburg, 2006), publCIF (Westrip, 2010).
Sn—Cl1 | 2.4587 (5) | Sn—N1 | 2.2552 (15) |
Sn—Cl2 | 2.5083 (5) | Sn—N2 | 2.2309 (15) |
Sn—S1 | 2.4768 (5) | Sn—C15 | 2.1552 (17) |
Cg1 is the centroid of benzene ring C15–C20. |
D—H···A | D—H | H···A | D···A | D—H···A |
C11—H11B···Cg1i | 0.99 | 2.60 | 3.522 (2) | 155 |
C13—H13B···Cl1ii | 0.99 | 2.80 | 3.632 (2) | 142 |
C16—H16···Cl2 | 0.95 | 2.66 | 3.350 (2) | 130 |
C20—H20···Cl1 | 0.95 | 2.70 | 3.363 (2) | 127 |
Symmetry codes: (i) x, y−1, z; (ii) x+1/2, −y+1/2, z+1/2. |
Footnotes
‡Additional correspondence author, e-mail: maaffan@yahoo.com.
Acknowledgements
The authors thank MOSTI (grant No. 06-01-09-SF0046) and the Universiti Malaysia Sarawak for supporting this study.
References
Brandenburg, K. (2006). DIAMOND. Crystal Impact GbR, Bonn, Germany. Google Scholar
Farrugia, L. J. (1997). J. Appl. Cryst. 30, 565. CrossRef IUCr Journals Google Scholar
Oxford Diffraction (2002). CrysAlis CCD and CrysAlis RED. Oxford Diffraction Ltd, Abingdon, Oxfordshire, England. Google Scholar
Salam, M. A., Affan, M. A., Shamsuddin, M. & Ng, S. W. (2010). Acta Cryst. E66, m570. Web of Science CSD CrossRef IUCr Journals Google Scholar
Sheldrick, G. M. (2008). Acta Cryst. A64, 112–122. Web of Science CrossRef CAS IUCr Journals Google Scholar
Westrip, S. P. (2010). J. Appl. Cryst. 43, 920–925. Web of Science CrossRef CAS IUCr Journals 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.
The title compound, (I), is the phenyltin derivative of the recently described structure of dichlorido{4-cyclohexyl-1-[1-(2-pyridyl-κN)ethylidene]thiosemicarbazidato-κ2N1,S}methyltin(IV) (Salam et al., 2010).
The Sn atom in (I), Fig. 1, exists within a six atom CCl2N2S donor set defined by the tridentate monodeprotonated Schiff base ligand, two mutually trans chlorido atoms, and the ispo-C atom of the Sn-bound phenyl group which is trans to the azo-N atom, Table 1. Distortions from the ideal octahedral geometry are ascribed primarily to the restricted bite distances formed by the Schiff base which results in an angle of 151.03 (4) ° for the nominally trans S1—Sn—N1 angle. The disposition of donor atoms resembles that found in the structure of the methyltin derivative (Salam et al., 2010). With the exception of the cyclohexyl group, which adopts a chair conformation, the Schiff base ligand is planar. Thus, the r.m.s. deviation from the least-squares plane through the 15 non-H atoms in the conjugated part of the ligand including the Sn and methine-C15 atoms, i.e. Sn,S1,N1–N4,C1–C9, is 0.053 Å. The Sn-bound phenyl group occupies a position almost orthogonal to the chelate rings as seen in the N2—Sn—C15—C16 torsion angle of 70.8 (5) Å.
In the crystal, supramolecular chains along the b axis are mediated by C—H···π interactions involving a methylene-H interacting with the Sn-bound phenyl group, Table 1. The chains pack in the bc plane and connections between the layers stacked along the a axis are of the type C—H···Cl, Fig. 2 and Table 1. The non-participation of the N—H atom in forming a significant intermolecular interaction contrasts the formation of N—H···Cl interactions in the methyltin derivative (Salam et al., 2010). It is noted that the orthogonal orientation of the Sn-bound phenyl group allows for the formation of close intramolecular C—H···Cl contacts, Table 1, which probably deactivate the chlorido atoms from forming significant hydrogen bonds. Further, it is noted that the C—H···π interactions present in (I) involves the Sn-bound phenyl group as as the acceptor, and that these are not possible in the methyltin derivative. Together, these factors explain the absence of significant hydrogen bonding interactions involving the N—H atom.