organic compounds
2-({4-[(1H-Imidazol-2-ylsulfanyl)methyl]-2,5-dimethylbenzyl}sulfanyl)-1H-imidazole
aDepartment of Chemistry and Polymer Science, Stellenbosch University, Private Bag X1, Matieland, 7602, South Africa
*Correspondence e-mail: malcolma@sun.ac.za
The title compound, C16H18N4S2, was prepared by the of two equivalents of 2-mercaptoimidazole for every bromine substituent of 1,4-bis(bromomethyl)-2,5-dimethylbenzene. The molecule is located on a crystallographic centre of inversion and therefore adopts a trans configuration with regards to the orientation of the two sulfur atoms. An intermolecular N—H⋯N hydrogen bond forms layers of molecules parallel to (03). The dihedral angle between the central and terminal rings is 174.8 (2)°.
Experimental
Crystal data
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Refinement
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Data collection: APEX2 (Bruker, 2009); cell SAINT (Bruker, 2009); data reduction: SAINT; program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: X-SEED (Barbour, 2001); software used to prepare material for publication: X-SEED.
Supporting information
https://doi.org/10.1107/S1600536810039607/bt5352sup1.cif
contains datablocks I, New_Global_Publ_Block. DOI:Structure factors: contains datablock I. DOI: https://doi.org/10.1107/S1600536810039607/bt5352Isup2.hkl
2-Mercaptoimidazole (1.60 g, 16 mmol) was added to 1,4-bis(bromomethyl)-2,5-dimethylbenzene (1.30 g, 4 mmol) in 200 mL of MeOH. The resulting solution was refluxed for 24 h.
The solvent was then removed in vacuo and K2CO3 (6.91 g, 50 mmol) in 100 mL of H2O was added. The solution was stirred until the product precipitated. The white solid was then filtered, washed with 100 mL of H2O and left to air dry.
All hydrogen atoms were refined in calculated positions, using a riding model (C–Har = 0.95 Å; C—H = 0.99 Å; N–H = 0.88 Å) with U(H) set to 1.2Ueq of the parent atom (1.5 for methyl H atoms).
The molecule adopts a trans configuration with regards to the orientation of the two sulfur atoms.
For related structures, see: Fan et al. (2003); Voo et al. (2003).
Data collection: APEX2 (Bruker, 2009); cell
SAINT (Bruker, 2009); data reduction: SAINT (Bruker, 2009); program(s) used to solve structure: SHELXS97 (Sheldrick, 2008); program(s) used to refine structure: SHELXL97 (Sheldrick, 2008); molecular graphics: X-SEED (Barbour, 2001); software used to prepare material for publication: X-SEED (Barbour, 2001).C16H18N4S2 | F(000) = 348 |
Mr = 330.46 | Dx = 1.372 Mg m−3 |
Monoclinic, P21/n | Mo Kα radiation, λ = 0.71073 Å |
Hall symbol: -P2yn | Cell parameters from 394 reflections |
a = 6.169 (3) Å | θ = 2.6–28.2° |
b = 9.491 (5) Å | µ = 0.33 mm−1 |
c = 13.722 (8) Å | T = 100 K |
β = 95.392 (8)° | Shard, colourless |
V = 799.8 (8) Å3 | 0.2 × 0.14 × 0.07 mm |
Z = 2 |
Bruker APEX CCD area-detector diffractometer | 1875 independent reflections |
Radiation source: fine-focus sealed tube | 1154 reflections with I > 2sσ(I) |
Graphite monochromator | Rint = 0.075 |
ω scans | θmax = 28.2°, θmin = 2.6° |
Absorption correction: multi-scan (SADABS; Bruker, 2009) | h = −8→7 |
Tmin = 0.945, Tmax = 0.977 | k = −12→6 |
4896 measured reflections | l = −17→18 |
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)] = 0.058 | Hydrogen site location: inferred from neighbouring sites |
wR(F2) = 0.149 | H-atom parameters constrained |
S = 1.01 | w = 1/[σ2(Fo2) + (0.0617P)2] where P = (Fo2 + 2Fc2)/3 |
1875 reflections | (Δ/σ)max < 0.001 |
101 parameters | Δρmax = 0.67 e Å−3 |
0 restraints | Δρmin = −0.39 e Å−3 |
C16H18N4S2 | V = 799.8 (8) Å3 |
Mr = 330.46 | Z = 2 |
Monoclinic, P21/n | Mo Kα radiation |
a = 6.169 (3) Å | µ = 0.33 mm−1 |
b = 9.491 (5) Å | T = 100 K |
c = 13.722 (8) Å | 0.2 × 0.14 × 0.07 mm |
β = 95.392 (8)° |
Bruker APEX CCD area-detector diffractometer | 1875 independent reflections |
Absorption correction: multi-scan (SADABS; Bruker, 2009) | 1154 reflections with I > 2sσ(I) |
Tmin = 0.945, Tmax = 0.977 | Rint = 0.075 |
4896 measured reflections |
R[F2 > 2σ(F2)] = 0.058 | 0 restraints |
wR(F2) = 0.149 | H-atom parameters constrained |
S = 1.01 | Δρmax = 0.67 e Å−3 |
1875 reflections | Δρmin = −0.39 e Å−3 |
101 parameters |
Geometry. All e.s.d.'s (except the e.s.d. in the dihedral angle between two l.s. planes) are estimated using the full covariance matrix. The cell e.s.d.'s are taken into account individually in the estimation of e.s.d.'s in distances, angles and torsion angles; correlations between e.s.d.'s in cell parameters are only used when they are defined by crystal symmetry. An approximate (isotropic) treatment of cell e.s.d.'s is used for estimating e.s.d.'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 > 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. |
x | y | z | Uiso*/Ueq | ||
N1 | 0.7634 (4) | 0.7794 (3) | 0.28821 (19) | 0.0230 (7) | |
H1 | 0.7160 | 0.6949 | 0.2705 | 0.028* | |
C2 | 0.8959 (5) | 0.8119 (4) | 0.3693 (2) | 0.0249 (8) | |
H2 | 0.9548 | 0.7482 | 0.4182 | 0.030* | |
C3 | 0.9285 (5) | 0.9529 (4) | 0.3674 (2) | 0.0257 (8) | |
H3 | 1.0158 | 1.0050 | 0.4154 | 0.031* | |
N4 | 0.8168 (4) | 1.0086 (3) | 0.28587 (18) | 0.0250 (7) | |
C5 | 0.7181 (5) | 0.8997 (4) | 0.2400 (2) | 0.0205 (7) | |
S6 | 0.55288 (13) | 0.91254 (10) | 0.12971 (6) | 0.0241 (3) | |
C7 | 0.2861 (5) | 0.9423 (4) | 0.1750 (2) | 0.0275 (8) | |
H7A | 0.2403 | 0.8586 | 0.2109 | 0.033* | |
H7B | 0.2914 | 1.0246 | 0.2195 | 0.033* | |
C8 | 0.1309 (5) | 0.9690 (4) | 0.0855 (2) | 0.0233 (8) | |
C9 | 0.0933 (5) | 1.1077 (4) | 0.0551 (2) | 0.0243 (8) | |
H9 | 0.1587 | 1.1819 | 0.0939 | 0.029* | |
C10 | 0.0364 (5) | 0.8586 (4) | 0.0300 (2) | 0.0242 (8) | |
C11 | 0.0624 (6) | 0.7085 (4) | 0.0609 (3) | 0.0320 (9) | |
H11A | −0.0269 | 0.6900 | 0.1149 | 0.048* | |
H11B | 0.2156 | 0.6898 | 0.0825 | 0.048* | |
H11C | 0.0154 | 0.6469 | 0.0055 | 0.048* |
U11 | U22 | U33 | U12 | U13 | U23 | |
N1 | 0.0274 (15) | 0.0207 (16) | 0.0199 (14) | −0.0032 (13) | −0.0031 (11) | −0.0010 (12) |
C2 | 0.0244 (19) | 0.030 (2) | 0.0189 (17) | 0.0024 (15) | −0.0067 (14) | 0.0045 (15) |
C3 | 0.0272 (19) | 0.032 (2) | 0.0163 (16) | −0.0024 (16) | −0.0055 (13) | 0.0015 (15) |
N4 | 0.0290 (16) | 0.0248 (16) | 0.0201 (14) | −0.0021 (13) | −0.0035 (12) | −0.0009 (13) |
C5 | 0.0209 (17) | 0.0212 (18) | 0.0190 (16) | 0.0042 (15) | −0.0002 (13) | −0.0013 (14) |
S6 | 0.0221 (5) | 0.0314 (5) | 0.0177 (4) | 0.0031 (4) | −0.0038 (3) | −0.0002 (4) |
C7 | 0.0235 (18) | 0.039 (2) | 0.0194 (16) | 0.0085 (16) | −0.0035 (13) | 0.0023 (16) |
C8 | 0.0189 (17) | 0.032 (2) | 0.0185 (16) | 0.0028 (15) | 0.0004 (13) | 0.0008 (15) |
C9 | 0.0182 (17) | 0.029 (2) | 0.0249 (17) | 0.0009 (15) | 0.0002 (13) | −0.0051 (15) |
C10 | 0.0229 (18) | 0.0268 (19) | 0.0230 (17) | 0.0031 (15) | 0.0017 (14) | 0.0031 (15) |
C11 | 0.034 (2) | 0.027 (2) | 0.036 (2) | 0.0035 (17) | 0.0045 (16) | 0.0035 (17) |
N1—C5 | 1.336 (4) | C7—H7A | 0.9900 |
N1—C2 | 1.354 (4) | C7—H7B | 0.9900 |
N1—H1 | 0.8800 | C8—C10 | 1.391 (5) |
C2—C3 | 1.353 (5) | C8—C9 | 1.394 (5) |
C2—H2 | 0.9500 | C9—C10i | 1.389 (4) |
C3—N4 | 1.364 (4) | C9—H9 | 0.9500 |
C3—H3 | 0.9500 | C10—C9i | 1.389 (4) |
N4—C5 | 1.327 (4) | C10—C11 | 1.491 (5) |
C5—S6 | 1.748 (3) | C11—H11A | 0.9800 |
S6—C7 | 1.835 (3) | C11—H11B | 0.9800 |
C7—C8 | 1.506 (4) | C11—H11C | 0.9800 |
C5—N1—C2 | 107.1 (3) | S6—C7—H7B | 110.6 |
C5—N1—H1 | 126.5 | H7A—C7—H7B | 108.7 |
C2—N1—H1 | 126.5 | C10—C8—C9 | 119.8 (3) |
C3—C2—N1 | 106.8 (3) | C10—C8—C7 | 121.4 (3) |
C3—C2—H2 | 126.6 | C9—C8—C7 | 118.6 (3) |
N1—C2—H2 | 126.6 | C10i—C9—C8 | 122.4 (3) |
C2—C3—N4 | 109.6 (3) | C10i—C9—H9 | 118.8 |
C2—C3—H3 | 125.2 | C8—C9—H9 | 118.8 |
N4—C3—H3 | 125.2 | C9i—C10—C8 | 117.8 (3) |
C5—N4—C3 | 105.1 (3) | C9i—C10—C11 | 119.8 (3) |
N4—C5—N1 | 111.5 (3) | C8—C10—C11 | 122.4 (3) |
N4—C5—S6 | 124.1 (3) | C10—C11—H11A | 109.5 |
N1—C5—S6 | 124.5 (3) | C10—C11—H11B | 109.5 |
C5—S6—C7 | 100.70 (15) | H11A—C11—H11B | 109.5 |
C8—C7—S6 | 105.7 (2) | C10—C11—H11C | 109.5 |
C8—C7—H7A | 110.6 | H11A—C11—H11C | 109.5 |
S6—C7—H7A | 110.6 | H11B—C11—H11C | 109.5 |
C8—C7—H7B | 110.6 | ||
C5—N1—C2—C3 | −0.4 (4) | C5—S6—C7—C8 | 174.8 (2) |
N1—C2—C3—N4 | 0.2 (4) | S6—C7—C8—C10 | 83.0 (3) |
C2—C3—N4—C5 | 0.1 (4) | S6—C7—C8—C9 | −93.0 (3) |
C3—N4—C5—N1 | −0.4 (4) | C10—C8—C9—C10i | −0.2 (5) |
C3—N4—C5—S6 | −179.6 (2) | C7—C8—C9—C10i | 175.9 (3) |
C2—N1—C5—N4 | 0.5 (4) | C9—C8—C10—C9i | 0.2 (5) |
C2—N1—C5—S6 | 179.7 (2) | C7—C8—C10—C9i | −175.8 (3) |
N4—C5—S6—C7 | −90.1 (3) | C9—C8—C10—C11 | −177.2 (3) |
N1—C5—S6—C7 | 90.8 (3) | C7—C8—C10—C11 | 6.9 (5) |
Symmetry code: (i) −x, −y+2, −z. |
D—H···A | D—H | H···A | D···A | D—H···A |
N1—H1···N4ii | 0.88 | 1.93 | 2.791 (4) | 165 |
Symmetry code: (ii) −x+3/2, y−1/2, −z+1/2. |
Experimental details
Crystal data | |
Chemical formula | C16H18N4S2 |
Mr | 330.46 |
Crystal system, space group | Monoclinic, P21/n |
Temperature (K) | 100 |
a, b, c (Å) | 6.169 (3), 9.491 (5), 13.722 (8) |
β (°) | 95.392 (8) |
V (Å3) | 799.8 (8) |
Z | 2 |
Radiation type | Mo Kα |
µ (mm−1) | 0.33 |
Crystal size (mm) | 0.2 × 0.14 × 0.07 |
Data collection | |
Diffractometer | Bruker APEX CCD area-detector |
Absorption correction | Multi-scan (SADABS; Bruker, 2009) |
Tmin, Tmax | 0.945, 0.977 |
No. of measured, independent and observed [I > 2sσ(I)] reflections | 4896, 1875, 1154 |
Rint | 0.075 |
(sin θ/λ)max (Å−1) | 0.664 |
Refinement | |
R[F2 > 2σ(F2)], wR(F2), S | 0.058, 0.149, 1.01 |
No. of reflections | 1875 |
No. of parameters | 101 |
H-atom treatment | H-atom parameters constrained |
Δρmax, Δρmin (e Å−3) | 0.67, −0.39 |
Computer programs: APEX2 (Bruker, 2009), SAINT (Bruker, 2009), SHELXS97 (Sheldrick, 2008), SHELXL97 (Sheldrick, 2008), X-SEED (Barbour, 2001).
D—H···A | D—H | H···A | D···A | D—H···A |
N1—H1···N4i | 0.88 | 1.93 | 2.791 (4) | 164.5 |
Symmetry code: (i) −x+3/2, y−1/2, −z+1/2. |
Acknowledgements
The authors would like to thank the Central Analytical Facility (CAF) at the University of Stellenbosch (US) for the use of their diffractometer as well as the US and NRF for funding.
References
Barbour, L. J. (2001). J. Supramol. Chem. 1, 189–191. CrossRef CAS Google Scholar
Bruker (2009). APEX2, SAINT and SADABS. Bruker AXS Inc., Madison, Wisconsin, USA. Google Scholar
Fan, C., Ma, C., Chen, C., Chen, F. & Liu, Q. (2003). Inorg. Chem. Commun. 6, 491–494 Web of Science CSD CrossRef CAS Google Scholar
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Voo, J. K., Lam, K. C., Rheingold, A. L. & Riordan, C. G. (2003). J. Chem. Soc. Dalton Trans. pp. 1803–1805. Google Scholar
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The molecule adopts a trans configuration with regards to the orientation of the two sulfur atoms.