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扭曲和转动磺胺键:合成、量子化学和晶体学研究。

Twisting and Turning the Sulfonamide Bond: A Synthetic, Quantum Chemical, and Crystallographic Study.

机构信息

Enamine Ltd., Chervonotkatska Street 78, Kyiv 02094, Ukraine.

Taras Shevchenko National University of Kyiv, Volodymyrska Street 60, Kyiv 01601, Ukraine.

出版信息

J Org Chem. 2020 Apr 17;85(8):5288-5299. doi: 10.1021/acs.joc.9b03394. Epub 2020 Mar 24.

Abstract

Structural restriction of the sulfonamide bond was used to design sultams with abnormal geometric parameters. Based on analysis of tertiary aliphatic sulfonamides published in the Cambridge crystallographic database, Paquette's sultams (i.e., bridged bicyclic sultams with a bridgehead nitrogen atom) were outlined, and a number of these compounds (including the novel smallest representative, 2-thia-1-azabicyclo[2.1.1]hexane 2,2-dioxide) were synthesized by cyclization of the corresponding amino sulfonyl fluorides. A series of tertiary aliphatic sulfonamides was studied by crystallographic and quantum chemical methods. It was found that the s-character of the nitrogen lone pair is the most important factor defining properties of the S-N bond. Thus, going from the sp-hybrid lone pair in common sulfonamides to the sp-like lone pair in the smallest Paquette's sultam resulted in an increase in S-N bond length by ca. 0.06 Å. The strain energy of ca. 30 kcal/mol was predicted for the latter compound, which was higher than for any existing sulfonamides studied.

摘要

利用磺胺键的结构限制,设计了具有异常几何参数的脒。基于对剑桥晶体数据库中公布的叔脂肪族磺酰胺的分析,概述了 Paquette 的脒(即带有桥头氮原子的桥环双环脒),并通过相应的氨基磺酰氟环化合成了其中的一些化合物(包括新型最小代表物 2-硫代-1-氮杂双环[2.1.1]己烷 2,2-二氧化物)。通过晶体学和量子化学方法研究了一系列叔脂肪族磺酰胺。发现氮孤对的 s 特征是定义 S-N 键性质的最重要因素。因此,从常见磺酰胺中的 sp 杂化孤对到最小 Paquette 的脒中的 sp 样孤对,S-N 键长增加了约 0.06 Å。预测后者化合物的应变能约为 30 kcal/mol,高于研究过的任何现有磺酰胺。

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