Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1410331 | Journal of Molecular Structure | 2009 | 5 Pages |
Abstract
The crystal structure of 5-benzylidene-2-thiohydantoin, C10H8N2OS, the precursor of annelated arylidene-2-thiohydantoin derivatives with the micromolar affinity to the benzodiazepine receptor, has been determined at 293Â K and 120Â K. The title molecule in Z-configuration is planar within experimental error. Among two bonds between N1/N3 and C2(sp2), N3C2 is evidently longer than the N1C2 one. In the structure determined at 120Â K difference equals 0.019Â Ã
. For that reason, in the cycloaddition reaction N3 nitrogen was privileged and the products of 2,3-substitution were obtained at a significantly higher yield than the 1,2-substitution ones. The chain of molecules joined by NHâ¦O hydrogen bonds created the main structure motive in the crystal. Hydrogen bond of NHâ¦S and intermolecular interactions of Sâ¦S were noticed between two chains. With respect to the center of symmetry, sulfur atoms are 3.414(1) Ã
and 3.3745(8)Â Ã
apart at ambient and low temperatures, respectively. The related Sâ¦S contacts, shorter than the sum of van der Waals' radii, were identified in many species deposited in CSD, all with cyclic and/or non-cyclic arrangements of CS. The statistical analysis of the geometrical distribution for such contacts suggests that there is a maximum of probability for collinear CSâ¦SC orientations. Additionally, if NH is located in close proximity of CS substituent, this contact is self-assembled with NHâ¦S weak hydrogen bonds.
Related Topics
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Chemistry
Organic Chemistry
Authors
Waldemar KsiÄ
żek, Katarzyna KieÄ-Kononowicz, Janina Karolak-Wojciechowska,