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铜催化环酮肟酯与烯胺硫酮的自由基C-C键裂解及[4+1]环化串联反应

Copper-Catalyzed Radical C-C Bond Cleavage and [4+1] Annulation Cascade of Cycloketone Oxime Esters with Enaminothiones.

作者信息

He Yuan, Lou Jiang, Wu Kaikai, Wang Hongmei, Yu Zhengkun

机构信息

Chinese Academy of Sciences , Dalian Institute of Chemical Physics , 457 Zhongshan Road , Dalian 116023 , People's Republic of China.

University of Chinese Academy of Sciences , Beijing 100049 , People's Republic of China.

出版信息

J Org Chem. 2019 Feb 15;84(4):2178-2190. doi: 10.1021/acs.joc.8b03175. Epub 2019 Jan 29.

Abstract

Carbon-carbon bond formation is among the most important reactions in organic synthesis. Reconstruction of a carbon-carbon bond through ring-opening C-C bond cleavage of a strained carbocycle usually occurs via a thermodynamically preferable pathway. However, carbon-carbon bond formation through thermodynamically less favorable C-C bond cleavage has seldom been documented. Herein, we disclose an unusual C-C bond cleavage of cycloketone oxime esters for [4+1] annulation. Under anaerobic copper(I) catalysis, cycloketone oxime esters underwent regioselective, thermodynamically less favorable radical C-C bond cleavage followed by annulation with enaminothiones; that is, α-thioxo ketene N, S-acetals efficiently affording 2-cyanoalkyl-aminothiophene derivatives. Cyclobutanone, -pentanone, -hexanone, and -heptanone oxime esters could act as the effective C1 building blocks in the annulation reaction. An iminyl radical mechanism is proposed for the rare C-C bond cleavage/[4+1] annulation cascade.

摘要

碳-碳键的形成是有机合成中最重要的反应之一。通过张力碳环的开环碳-碳键裂解来重建碳-碳键通常通过热力学上更有利的途径发生。然而,通过热力学上不太有利的碳-碳键裂解来形成碳-碳键的情况鲜有报道。在此,我们揭示了一种用于[4+1]环化反应的环酮肟酯不寻常的碳-碳键裂解。在厌氧铜(I)催化下,环酮肟酯发生区域选择性、热力学上不太有利的自由基碳-碳键裂解,随后与烯胺硫酮进行环化反应;也就是说,α-硫代酮烯N,S-乙缩醛有效地提供2-氰基烷基-氨基噻吩衍生物。环丁酮、环戊酮、环己酮和环庚酮肟酯可作为环化反应中有效的C1构建单元。针对这种罕见的碳-碳键裂解/[4+1]环化串联反应提出了一种亚胺基自由基机理。

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