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钴催化以水为氢源的1,3-二烯的化学和立体选择性转移半氢化反应

Cobalt-Catalyzed Chemo- and Stereoselective Transfer Semihydrogenation of 1,3-Dienes with Water as a Hydrogen Source.

作者信息

Wang Heng, Jie Xiaofeng, Su Ting, Wu Qianghui, Kuang Jian, Sun Zhao, Zhao Yingying, Chong Qinglei, Guo Yinlong, Zhang Zhihan, Meng Fanke

机构信息

State Key Laboratory of Organometallic Chemistry, Center for Excellence in Molecular Synthesis, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 345 Lingling Road, Shanghai 200032, China.

School of Chemistry and Chemical Engineering, Liaoning Normal University, 850 Huanghe Road, Dalian 116029, China.

出版信息

J Am Chem Soc. 2024 Aug 21;146(33):23476-23486. doi: 10.1021/jacs.4c06925. Epub 2024 Aug 7.

Abstract

()-1,2-Disubstituted, trisubstituted, and tetrasubstituted alkenes are not only important units in medicinal chemistry, natural product synthesis, and material science but also useful intermediates in organic synthesis. Development of catalytic stereoselective transformations to access multisubstituted alkenes with various substitution patterns from easily accessible modular starting materials and readily available catalysts is a crucial goal in the field of catalysis. Water is an ideal hydrogen source for catalytic transfer hydrogenation despite of the high difficulty to activate water. Here, we report a cobalt-catalyzed protocol for regio- and stereoselective transfer semihydrogenation of 1,3-dienes to construct a broad scope of ()-1,2-disubstituted, ()-, ()-trisubstituted, and tetrasubstituted alkenes in high stereoselectivity with HO as the hydrogen source. Mechanistic studies revealed that the reactions proceeded through a unique Co(I)/Co(III) cycle and involved a 1,4-cobalt shift process, which is an unprecedented reaction pathway, providing a new platform for modular synthesis of multisubstituted alkenes as well as opportunities for designing novel reaction modes and pushing forward the advancement in organocobalt chemistry.

摘要

()-1,2-二取代、三取代和四取代烯烃不仅是药物化学、天然产物合成和材料科学中的重要单元,也是有机合成中有用的中间体。从易于获得的模块化起始原料和现成的催化剂开发催化立体选择性转化以获得具有各种取代模式的多取代烯烃是催化领域的一个关键目标。尽管活化水难度很大,但水是催化转移氢化的理想氢源。在此,我们报道了一种钴催化的方法,用于1,3-二烯的区域和立体选择性转移半氢化反应,以HO作为氢源,高立体选择性地构建多种()-1,2-二取代、()-、()-三取代和四取代烯烃。机理研究表明,反应通过独特的Co(I)/Co(III)循环进行,并涉及1,4-钴迁移过程,这是一条前所未有的反应途径,为多取代烯烃的模块化合成提供了一个新平台,并为设计新型反应模式以及推动有机钴化学的发展提供了机会。

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