Organotellurium Chemistry: Synthesis and Properties of 2-Acylamino- and 2-Arylamino-1,3-benzotellurazoles

W. E. Smith, D. V. Franklin, Kourtni Lynn Goutierrez, F. Fronczek, F. Mautner, Thomas Junk
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引用次数: 8

Abstract

Synthetic methods have been developed to prepare novel 1,3-benzotellurazoles carrying acylamino and arylamino moieties in position 2, in order to investigate their propensity to self-assemble to supramolecular structures. The targeted compounds were obtained in yields ranging from 44% to 67%, by reacting bis(2-aminophenyl) ditelluride with acyl- and aryl isothiocyanates, respectively, and subsequent reductive cyclization of the resulting thiourea derivatives. Seven novel 1,3-benzotellurazole derivatives were prepared: 2-benzoylamino-1,3-benzotellurazole, 2-(4-chlorobenzoylamino)-1,3-benzotellurazole, 2-(2-bromobenzoylamino)-1,3-benzotellurazole, 2-(4-bromobenzoylamino)-1,3-benzotellurazole, 2-(4-methoxybenzoylamino)-1,3-benzotellurazole, 2-phenylamino-1,3-benzotellurazole, and 2-(4-chlorophenylamino-1,3-benzotellurazole. A simplified protocol was employed to synthesize all acyl isothiocyanates needed for their preparation from benzoyl halide derivatives and potassium thiocyanate. The reductive cyclization of the intermediate thioureas was challenging, only the use of hydroxymethanesulfinate in the presence of elemental mercury provided synthetically useful product yields. A mechanism was proposed, consisting of the insertion of mercury into the Te-Te bond, followed by intramolecular nucleophilic attack of the thiocarbonyl moiety by the resulting insertion product. All 2-acylamino-1,3-benzotellurazoles are crystalline solids, which are stable to ambient light, air and moderate heat. A characterization of selected samples by X-ray crystallography indicated that they form dimers in solid state, resulting from hydrogen bonding between the exocyclic and endocyclic nitrogen atoms of two adjacent molecules. This sets them apart from 2-alkyl- and 2-aryl-1,3-benzotellurazoles, which are known to self-assemble into supramolecular wires.
有机碲化学:2-酰基氨基和2-芳基氨基-1,3-苯并碲唑的合成和性质
为了研究其自组装成超分子结构的倾向,本文开发了新的1,3-苯并噻唑的合成方法,在2位上携带酰基胺和芳基胺基团。通过与异硫氰酸酯和芳基异硫氰酸酯分别反应双(2-氨基苯基)二碲化物,并随后对所得到的硫脲衍生物进行还原环化,得到的目标化合物的产率为44%至67%。制备了7种新型1,3-苯并噻唑衍生物:2-苯并酰氨基-1,3-苯并噻唑、2-(4-氯苯并酰氨基)-1,3-苯并噻唑、2-(4-溴并酰氨基)-1,3-苯并噻唑、2-(4-甲氧基苯并酰氨基)-1,3-苯并噻唑、2-(4-甲氧基苯并酰氨基)-1,3-苯并噻唑、2-(4-氯苯氨基-1,3-苯并噻唑。以苯甲酰卤化物衍生物和硫氰酸钾为原料,采用简化程序合成了制备所需的所有酰基异硫氰酸酯。中间硫脲的还原环化具有挑战性,只有在元素汞存在的情况下使用羟基甲磺酸盐才能提供合成有用的产物产率。提出了一种机制,包括将汞插入Te-Te键,然后由所产生的插入产物在分子内亲核攻击硫羰基部分。所有的2-酰基氨基-1,3-苯并噻唑都是结晶固体,对环境光、空气和中热都很稳定。对所选样品的x射线晶体学表征表明,它们在固态下形成二聚体,是由相邻分子的外环和内环氮原子之间的氢键形成的。这使得它们与2-烷基和2-芳基-1,3-苯并三氮唑不同,后者可以自组装成超分子线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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