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甲氧基取代的4-苯基-4-噻唑啉-2-硫酮的构象与互变异构:晶体学与从头算联合研究

Conformation and tautomerism of methoxy-substituted 4-phenyl-4-thiazoline-2-thiones: a combined crystallographic and ab initio investigation.

作者信息

Balti Monaem, Norberg Bernadette, Efrit Mohamed Lotfi, Lanners Steve, Wouters Johan

机构信息

University of Namur, 61 rue Bruxelles, B5000 Namur, Belgium.

Chemistry Department, University of Tunis El Manar, 1068 Tunis, Tunisia.

出版信息

Acta Crystallogr C Struct Chem. 2016 May 1;72(Pt 5):421-5. doi: 10.1107/S2053229616006069. Epub 2016 Apr 14.

Abstract

4-Phenyl-4-thiazoline-2-thiol is an active pharmaceutical compound, one of whose activities is as a human indolenamine dioxygenase inhibitor. It has been shown recently that in both the solid state and the gas phase, the thiazolinethione tautomer should be preferred. As part of both research on this lead compound and a medicinal chemistry program, a series of substituted arylthiazolinethiones have been synthesized. The molecular conformations and tautomerism of 4-(2-methoxyphenyl)-4-thiazoline-2-thione and 4-(4-methoxyphenyl)-4-thiazoline-2-thione, both C10H9NOS2, are reported and compared with the geometry deduced from ab initio calculations [PBE/6-311G(d,p)]. Both the crystal structure analyses and the calculations establish the thione tautomer for the two substituted arylthiazolinethiones. In the crystal structure of the 2-methoxyphenyl regioisomer, the thiazolinethione unit was disordered over two conformations. Both isomers exhibit similar hydrogen-bond patterns [R2(2)(8) motif] and form dimers. The crystal packing is further reinforced by short S...S interactions in the 2-methoxyphenyl isomer. The conformations of the two regioisomers correspond to stable geometries calculated from an ab initio energy-relaxed scan.

摘要

4-苯基-4-噻唑啉-2-硫醇是一种活性药物化合物,其活性之一是作为人吲哚胺双加氧酶抑制剂。最近研究表明,在固态和气态下,噻唑啉硫酮互变异构体应占优势。作为对该先导化合物研究以及药物化学项目的一部分,已合成了一系列取代芳基噻唑啉硫酮。本文报道了4-(2-甲氧基苯基)-4-噻唑啉-2-硫酮和4-(4-甲氧基苯基)-4-噻唑啉-2-硫酮(均为C10H9NOS2)的分子构象和互变异构现象,并与从头算计算[PBE/6-311G(d,p)]推导的几何结构进行了比较。晶体结构分析和计算均确定了这两种取代芳基噻唑啉硫酮的硫酮互变异构体。在2-甲氧基苯基区域异构体的晶体结构中,噻唑啉硫酮单元在两种构象上无序排列。两种异构体均表现出相似的氢键模式[R2(2)(8)基序]并形成二聚体。2-甲氧基苯基异构体中的短S...S相互作用进一步加强了晶体堆积。两种区域异构体的构象与从头算能量弛豫扫描计算出的稳定几何结构相对应。

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