metal-organic compounds
Aquatrimethyl[2-(4-methylpyrimidin-2-ylsulfanyl)acetato-κO]tin(IV)
aDongcheng College of Liaocheng University, Shandong 252059, People's Republic of China, bCollege of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng 252059, People's Republic of China, and cTancheng Middle School, Linyin 276000, People's Republic of China
*Correspondence e-mail: zhangjunhong@lcu.edu.cn
In the title compound, [Sn(CH3)3(C7H7N2O2S)(H2O)], the SnIV atom has a distorted trigonal–bipyramidal coordination geometry, with one carboxylate O atom of the 2-(4-methylpyrimidine-2-sulfanyl)acetate ligand and the O atom of a water molecule in axial positions, and three methyl groups in equatorial positions. In the crystal, molecules are linked via O—H⋯O and O—H⋯N hydrogen bonds, forming double-stranded chains propagating along [010].
Experimental
Crystal data
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Data collection: SMART (Bruker, 2007); cell SAINT (Bruker, 2007); data reduction: SAINT; program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: SHELXTL (Sheldrick, 2008); software used to prepare material for publication: SHELXTL.
Supporting information
10.1107/S1600536813012622/su2595sup1.cif
contains datablocks I, global. DOI:Structure factors: contains datablock I. DOI: 10.1107/S1600536813012622/su2595Isup2.hkl
The reaction was carried out under an atmosphere of nitrogen. 4-methylpyrimidine-2-thioglycolic acid (1 mmol) and sodium ethanol (1 mmol) were added to a stirred solution of ethanol (30 ml) in a Schlenk flask and stirred for 30 min. Trimethyltin chloride (1 mmol) was then added to the reactor and the reaction mixture was stirred for 12 h at 353 K. The resulting clear solution was evaporated under vacuum. The product was crystallized from dichloromethane to yield colourless block-like crystals of the title compound [Yield 80%; M.p. 430 K]. Anal. Calcd (%) for C10H18N2O3SSn (Mr = 365.01): C, 32.90; H, 4.97; N, 7.67; Found (%): C, 32.87; H, 4.94; N, 7.71.
The water molecule H atoms were placed in calculated positions and treated as riding atoms: O-H = 0.85 Å with Uiso(H) = 1.5Ueq(O). The C-bound H atoms were also placed in calculated positions and treated as riding atoms: C—H = 0.93 and 0.96 Å, for CH and CH3 H atoms, respectively, with Uiso(H) = 1.5Ueq(C-methyl) and = 1.2Ueq(C) for other H atoms. In the final cycles of ΣW > 10.
two reflections were omitted as (Iobs-Icalc)/Data collection: SMART (Bruker, 2007); cell
SAINT (Bruker, 2007); data reduction: SAINT (Bruker, 2007); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: SHELXTL (Sheldrick, 2008); software used to prepare material for publication: SHELXTL (Sheldrick, 2008).[Sn(CH3)3(C7H7N2O2S)(H2O)] | F(000) = 728 |
Mr = 365.01 | Dx = 1.631 Mg m−3 |
Monoclinic, P21/c | Cu Kα radiation, λ = 1.54184 Å |
Hall symbol: -P 2ybc | Cell parameters from 2652 reflections |
a = 7.7658 (4) Å | θ = 4.0–70.5° |
b = 11.0901 (4) Å | µ = 15.00 mm−1 |
c = 18.8261 (8) Å | T = 293 K |
β = 113.575 (4)° | Block, colourless |
V = 1486.05 (11) Å3 | 0.05 × 0.04 × 0.04 mm |
Z = 4 |
Xcalibur (Eos, Gemini) [CHECK! BRUKER SOFTWARE?] diffractometer | 2666 independent reflections |
Radiation source: Enhance (Cu) X-ray Source | 2151 reflections with I > 2σ(I) |
Graphite monochromator | Rint = 0.059 |
Detector resolution: 16.2563 pixels mm-1 | θmax = 67.3°, θmin = 4.7° |
phi and ω scans | h = −6→9 |
Absorption correction: multi-scan (SADABS; Bruker, 2007) | k = −13→13 |
Tmin = 0.521, Tmax = 0.585 | l = −22→21 |
8393 measured reflections |
Refinement on F2 | Secondary atom site location: difference Fourier map |
Least-squares matrix: full | Hydrogen site location: inferred from neighbouring sites |
R[F2 > 2σ(F2)] = 0.047 | H-atom parameters constrained |
wR(F2) = 0.132 | w = 1/[σ2(Fo2) + (0.0753P)2] where P = (Fo2 + 2Fc2)/3 |
S = 1.05 | (Δ/σ)max = 0.001 |
2664 reflections | Δρmax = 1.52 e Å−3 |
159 parameters | Δρmin = −0.78 e Å−3 |
0 restraints | Extinction correction: SHELXL97 (Sheldrick, 2008), Fc*=kFc[1+0.001xFc2λ3/sin(2θ)]-1/4 |
Primary atom site location: structure-invariant direct methods | Extinction coefficient: 0.00176 (18) |
[Sn(CH3)3(C7H7N2O2S)(H2O)] | V = 1486.05 (11) Å3 |
Mr = 365.01 | Z = 4 |
Monoclinic, P21/c | Cu Kα radiation |
a = 7.7658 (4) Å | µ = 15.00 mm−1 |
b = 11.0901 (4) Å | T = 293 K |
c = 18.8261 (8) Å | 0.05 × 0.04 × 0.04 mm |
β = 113.575 (4)° |
Xcalibur (Eos, Gemini) [CHECK! BRUKER SOFTWARE?] diffractometer | 2666 independent reflections |
Absorption correction: multi-scan (SADABS; Bruker, 2007) | 2151 reflections with I > 2σ(I) |
Tmin = 0.521, Tmax = 0.585 | Rint = 0.059 |
8393 measured reflections |
R[F2 > 2σ(F2)] = 0.047 | 0 restraints |
wR(F2) = 0.132 | H-atom parameters constrained |
S = 1.05 | Δρmax = 1.52 e Å−3 |
2664 reflections | Δρmin = −0.78 e Å−3 |
159 parameters |
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 esds 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 > 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. |
x | y | z | Uiso*/Ueq | ||
Sn1 | 0.88830 (6) | 1.02871 (3) | 0.61937 (2) | 0.0477 (2) | |
S1 | 0.8813 (3) | 0.51496 (13) | 0.57463 (11) | 0.0572 (6) | |
O1 | 1.0216 (7) | 0.7546 (4) | 0.6551 (2) | 0.0631 (14) | |
O2 | 0.8531 (6) | 0.8672 (4) | 0.5524 (2) | 0.0559 (14) | |
O3 | 0.9257 (8) | 1.2230 (4) | 0.6901 (3) | 0.082 (2) | |
N1 | 0.6645 (8) | 0.4207 (4) | 0.6350 (3) | 0.0534 (18) | |
N2 | 0.5982 (8) | 0.6263 (5) | 0.5937 (3) | 0.0566 (17) | |
C1 | 0.7227 (12) | 1.1295 (7) | 0.5191 (4) | 0.075 (3) | |
C2 | 1.1824 (10) | 1.0401 (6) | 0.6541 (5) | 0.071 (3) | |
C3 | 0.7556 (13) | 0.9649 (7) | 0.6896 (5) | 0.074 (3) | |
C4 | 0.9201 (9) | 0.7672 (5) | 0.5856 (4) | 0.049 (2) | |
C5 | 0.8680 (10) | 0.6603 (5) | 0.5312 (3) | 0.054 (2) | |
C6 | 0.6941 (9) | 0.5235 (5) | 0.6040 (4) | 0.0457 (19) | |
C8 | 0.4562 (10) | 0.6241 (8) | 0.6160 (4) | 0.068 (3) | |
C9 | 0.4131 (11) | 0.5250 (8) | 0.6490 (5) | 0.071 (3) | |
C10 | 0.5225 (10) | 0.4220 (6) | 0.6579 (4) | 0.060 (2) | |
C12 | 0.4868 (13) | 0.3083 (7) | 0.6930 (5) | 0.091 (4) | |
H1A | 0.61760 | 1.08170 | 0.48660 | 0.1130* | |
H1B | 0.79770 | 1.15070 | 0.49100 | 0.1130* | |
H1C | 0.67800 | 1.20150 | 0.53440 | 0.1130* | |
H2A | 1.23750 | 1.07840 | 0.70390 | 0.1070* | |
H2B | 1.20970 | 1.08670 | 0.61690 | 0.1070* | |
H2C | 1.23360 | 0.96050 | 0.65730 | 0.1070* | |
H3A | 0.72540 | 0.88110 | 0.67880 | 0.1110* | |
H3B | 0.64240 | 1.00990 | 0.67900 | 0.1110* | |
H3C | 0.83830 | 0.97440 | 0.74320 | 0.1110* | |
H3D | 0.96840 | 1.20950 | 0.73860 | 0.1230* | |
H3F | 0.81920 | 1.25720 | 0.67570 | 0.1230* | |
H5A | 0.94970 | 0.66000 | 0.50340 | 0.0650* | |
H5B | 0.74050 | 0.67200 | 0.49320 | 0.0650* | |
H8 | 0.38290 | 0.69300 | 0.60890 | 0.0820* | |
H9 | 0.31430 | 0.52630 | 0.66500 | 0.0850* | |
H12A | 0.47470 | 0.24180 | 0.65860 | 0.1360* | |
H12B | 0.37290 | 0.31660 | 0.70110 | 0.1360* | |
H12C | 0.58980 | 0.29360 | 0.74170 | 0.1360* |
U11 | U22 | U33 | U12 | U13 | U23 | |
Sn1 | 0.0622 (3) | 0.0338 (3) | 0.0444 (3) | −0.0027 (2) | 0.0186 (2) | 0.0027 (2) |
S1 | 0.0757 (11) | 0.0341 (7) | 0.0735 (11) | −0.0025 (7) | 0.0420 (9) | −0.0056 (7) |
O1 | 0.082 (3) | 0.050 (2) | 0.047 (2) | −0.007 (2) | 0.015 (2) | −0.0018 (19) |
O2 | 0.074 (3) | 0.038 (2) | 0.051 (2) | −0.004 (2) | 0.020 (2) | −0.0014 (18) |
O3 | 0.121 (5) | 0.046 (3) | 0.067 (3) | 0.009 (3) | 0.024 (3) | −0.009 (2) |
N1 | 0.072 (4) | 0.035 (2) | 0.054 (3) | −0.010 (2) | 0.026 (3) | −0.004 (2) |
N2 | 0.059 (3) | 0.048 (3) | 0.064 (3) | 0.005 (2) | 0.026 (3) | 0.010 (2) |
C1 | 0.103 (6) | 0.057 (4) | 0.053 (4) | 0.006 (4) | 0.018 (4) | 0.005 (3) |
C2 | 0.052 (4) | 0.056 (4) | 0.091 (6) | −0.013 (3) | 0.013 (4) | −0.010 (4) |
C3 | 0.098 (6) | 0.065 (5) | 0.079 (5) | 0.005 (4) | 0.057 (5) | 0.010 (4) |
C4 | 0.063 (4) | 0.041 (3) | 0.051 (4) | −0.018 (3) | 0.030 (3) | −0.011 (3) |
C5 | 0.081 (5) | 0.036 (3) | 0.053 (3) | −0.012 (3) | 0.035 (3) | −0.004 (3) |
C6 | 0.054 (4) | 0.034 (3) | 0.047 (3) | −0.009 (2) | 0.018 (3) | −0.006 (2) |
C8 | 0.054 (4) | 0.076 (5) | 0.071 (5) | 0.014 (4) | 0.022 (4) | 0.018 (4) |
C9 | 0.053 (4) | 0.093 (6) | 0.065 (5) | 0.001 (4) | 0.023 (4) | 0.002 (4) |
C10 | 0.069 (4) | 0.058 (4) | 0.049 (3) | −0.022 (3) | 0.021 (3) | −0.003 (3) |
C12 | 0.131 (8) | 0.067 (5) | 0.088 (6) | −0.033 (5) | 0.059 (6) | 0.004 (4) |
Sn1—O2 | 2.144 (4) | C10—C12 | 1.500 (11) |
Sn1—O3 | 2.488 (5) | C1—H1A | 0.9600 |
Sn1—C1 | 2.127 (7) | C1—H1B | 0.9600 |
Sn1—C2 | 2.113 (9) | C1—H1C | 0.9600 |
Sn1—C3 | 2.098 (10) | C2—H2A | 0.9600 |
S1—C5 | 1.792 (6) | C2—H2B | 0.9600 |
S1—C6 | 1.752 (8) | C2—H2C | 0.9600 |
O1—C4 | 1.236 (8) | C3—H3A | 0.9600 |
O2—C4 | 1.277 (7) | C3—H3B | 0.9600 |
O3—H3D | 0.8500 | C3—H3C | 0.9600 |
O3—H3F | 0.8500 | C5—H5A | 0.9700 |
N1—C6 | 1.342 (8) | C5—H5B | 0.9700 |
N1—C10 | 1.335 (10) | C8—H8 | 0.9300 |
N2—C8 | 1.328 (10) | C9—H9 | 0.9300 |
N2—C6 | 1.333 (8) | C12—H12A | 0.9600 |
C4—C5 | 1.512 (8) | C12—H12B | 0.9600 |
C8—C9 | 1.368 (12) | C12—H12C | 0.9600 |
C9—C10 | 1.393 (12) | ||
O2—Sn1—O3 | 176.66 (16) | Sn1—C1—H1C | 109.00 |
O2—Sn1—C1 | 91.6 (2) | H1A—C1—H1B | 109.00 |
O2—Sn1—C2 | 95.7 (2) | H1A—C1—H1C | 109.00 |
O2—Sn1—C3 | 96.3 (2) | H1B—C1—H1C | 109.00 |
O3—Sn1—C1 | 85.4 (2) | Sn1—C2—H2A | 109.00 |
O3—Sn1—C2 | 84.4 (2) | Sn1—C2—H2B | 109.00 |
O3—Sn1—C3 | 86.4 (3) | Sn1—C2—H2C | 109.00 |
C1—Sn1—C2 | 116.0 (3) | H2A—C2—H2B | 109.00 |
C1—Sn1—C3 | 117.5 (4) | H2A—C2—H2C | 110.00 |
C2—Sn1—C3 | 124.6 (3) | H2B—C2—H2C | 110.00 |
C5—S1—C6 | 101.1 (3) | Sn1—C3—H3A | 109.00 |
Sn1—O2—C4 | 120.4 (4) | Sn1—C3—H3B | 109.00 |
Sn1—O3—H3F | 109.00 | Sn1—C3—H3C | 110.00 |
H3D—O3—H3F | 109.00 | H3A—C3—H3B | 109.00 |
Sn1—O3—H3D | 110.00 | H3A—C3—H3C | 109.00 |
C6—N1—C10 | 116.0 (6) | H3B—C3—H3C | 109.00 |
C6—N2—C8 | 115.1 (6) | S1—C5—H5A | 108.00 |
O1—C4—C5 | 120.9 (5) | S1—C5—H5B | 108.00 |
O1—C4—O2 | 125.4 (6) | C4—C5—H5A | 108.00 |
O2—C4—C5 | 113.8 (5) | C4—C5—H5B | 108.00 |
S1—C5—C4 | 116.4 (4) | H5A—C5—H5B | 107.00 |
S1—C6—N1 | 113.5 (5) | N2—C8—H8 | 119.00 |
S1—C6—N2 | 119.1 (5) | C9—C8—H8 | 119.00 |
N1—C6—N2 | 127.4 (7) | C8—C9—H9 | 121.00 |
N2—C8—C9 | 122.9 (8) | C10—C9—H9 | 121.00 |
C8—C9—C10 | 117.7 (8) | C10—C12—H12A | 109.00 |
N1—C10—C9 | 120.9 (7) | C10—C12—H12B | 109.00 |
N1—C10—C12 | 117.1 (7) | C10—C12—H12C | 109.00 |
C9—C10—C12 | 122.1 (8) | H12A—C12—H12B | 109.00 |
Sn1—C1—H1A | 109.00 | H12A—C12—H12C | 109.00 |
Sn1—C1—H1B | 109.00 | H12B—C12—H12C | 109.00 |
C1—Sn1—O2—C4 | −176.2 (6) | C6—N1—C10—C9 | 0.4 (10) |
C2—Sn1—O2—C4 | 67.5 (6) | C6—N1—C10—C12 | −179.8 (6) |
C3—Sn1—O2—C4 | −58.3 (6) | C8—N2—C6—S1 | 178.6 (5) |
C6—S1—C5—C4 | 69.3 (6) | C8—N2—C6—N1 | −1.1 (10) |
C5—S1—C6—N1 | 176.1 (5) | C6—N2—C8—C9 | 1.6 (10) |
C5—S1—C6—N2 | −3.6 (6) | O1—C4—C5—S1 | 22.7 (10) |
Sn1—O2—C4—O1 | −6.7 (10) | O2—C4—C5—S1 | −158.6 (5) |
Sn1—O2—C4—C5 | 174.7 (5) | N2—C8—C9—C10 | −1.2 (12) |
C10—N1—C6—S1 | −179.6 (5) | C8—C9—C10—N1 | 0.1 (11) |
C10—N1—C6—N2 | 0.1 (10) | C8—C9—C10—C12 | −179.7 (7) |
D—H···A | D—H | H···A | D···A | D—H···A |
O3—H3D···O1i | 0.85 | 2.03 | 2.798 (6) | 149 |
O3—H3F···N1ii | 0.85 | 2.14 | 2.884 (7) | 146 |
Symmetry codes: (i) −x+2, y+1/2, −z+3/2; (ii) x, y+1, z. |
Experimental details
Crystal data | |
Chemical formula | [Sn(CH3)3(C7H7N2O2S)(H2O)] |
Mr | 365.01 |
Crystal system, space group | Monoclinic, P21/c |
Temperature (K) | 293 |
a, b, c (Å) | 7.7658 (4), 11.0901 (4), 18.8261 (8) |
β (°) | 113.575 (4) |
V (Å3) | 1486.05 (11) |
Z | 4 |
Radiation type | Cu Kα |
µ (mm−1) | 15.00 |
Crystal size (mm) | 0.05 × 0.04 × 0.04 |
Data collection | |
Diffractometer | Xcalibur (Eos, Gemini) [CHECK! BRUKER SOFTWARE?] diffractometer |
Absorption correction | Multi-scan (SADABS; Bruker, 2007) |
Tmin, Tmax | 0.521, 0.585 |
No. of measured, independent and observed [I > 2σ(I)] reflections | 8393, 2666, 2151 |
Rint | 0.059 |
(sin θ/λ)max (Å−1) | 0.598 |
Refinement | |
R[F2 > 2σ(F2)], wR(F2), S | 0.047, 0.132, 1.05 |
No. of reflections | 2664 |
No. of parameters | 159 |
H-atom treatment | H-atom parameters constrained |
Δρmax, Δρmin (e Å−3) | 1.52, −0.78 |
Computer programs: SMART (Bruker, 2007), SAINT (Bruker, 2007), SHELXS97 (Sheldrick, 2008), SHELXL97 (Sheldrick, 2008), SHELXTL (Sheldrick, 2008).
D—H···A | D—H | H···A | D···A | D—H···A |
O3—H3D···O1i | 0.85 | 2.03 | 2.798 (6) | 149 |
O3—H3F···N1ii | 0.85 | 2.14 | 2.884 (7) | 146 |
Symmetry codes: (i) −x+2, y+1/2, −z+3/2; (ii) x, y+1, z. |
Acknowledgements
The authors thank the Liaocheng University Foundation (xo9013), the Liaocheng University State Key Laboratory of Crystal Materials (SF2012068), the Project of Shandong Provincial Education Department (J12LD13) and Liaocheng University Funds (31805) for Young Scientists for financial support.
References
Bruker (2007). SMART, SAINT and SADABS. Bruker AXS Inc., Madison, Wisconsin, USA. Google Scholar
Sheldrick, G. M. (2008). Acta Cryst. A64, 112–122. Web of Science CrossRef CAS IUCr Journals Google Scholar
Zhang, J.-H., Ma, C.-L. & Zhang, R.-F. (2007). Acta Cryst. E63, m2161. Web of Science CSD CrossRef IUCr Journals Google Scholar
Zhu, Q. & Zhang, R. (2011). Acta Cryst. E67, m1834. Web of Science CSD CrossRef 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 is a trimethyltin ester of 4-methylpyrimidine-2-thioglycolic acid, Fig. 1. The geometry of tin atom, Sn1, is a slightly distorted trigonal bipyramid, surrounded axially by atom O2 of the ligand and atom O3 of a water molecule. The axial angle O2—Sn1—O3 is 176.66 (16) Å close to a linear arrangement. Three carbon atoms of the methyl groups are located in the equatorially plane and the sum of the trigonal C—Sn—C angles is 358.1°, which illustrates that the three methyl C atoms and the tin atom are nearly coplanar. The Sn—O distances of 2.144 (4) Å and 2.488 (5) Å, are a little longer than the covalent bond length of tin and oxygen (Zhang et al., 2007) but similar to the same distances reported for other triorganotin polymeric structures (Zhu et al., 2011).
In the crystal, molecules are linked via O-H···O and O-H···N hydrogen bonds forming double-stranded chains propagating along [010]; see Table 1 and Fig. 2.