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对映选择性钴催化炔烃的串联氢硅烷化和硼氢化反应,以获得对映富集的 1,1-硅基硼烷。

Enantioselective Cobalt-Catalyzed Cascade Hydrosilylation and Hydroboration of Alkynes to Access Enantioenriched 1,1-Silylboryl Alkanes.

机构信息

Institute of Next Generation Matter Transformation, College of Material Sciences Engineering, Huaqiao University, Xiamen, Fujian 361021, China.

Key Laboratory of Molecule Synthesis and Function Discovery, Fujian Province University, College of Chemistry at Fuzhou University, Fuzhou, Fujian 350108, China.

出版信息

J Am Chem Soc. 2021 Aug 25;143(33):13124-13134. doi: 10.1021/jacs.1c04248. Epub 2021 Aug 12.

Abstract

Enantioenriched 1,1-silylboryl alkanes possess silyl and boryl groups that are both connected to the same stereogenic carbon center at well-defined orientations. As these chiral multifunctionalized compounds potentially offer two synthetic handles, they are highly valued building blocks in asymmetric synthesis as well as medicinal chemistry. Despite the potential usefulness, efficient synthetic approaches for their preparation are scarce. Seeking to address this deficiency, an enantioselective cobalt-catalyzed hydrosilylation/hydroboration cascade of terminal alkynes has been realized. This protocol constitutes an impressive case of chemo-, regio-, and stereoselectivity wherein the two different hydrofunctionalization events are exquisitely controlled by a single set of metal catalyst and ligand, an operation which would usually require two separate catalytic systems. Downstream transformations of enantioenriched 1,1-silyboryl alkanes led to various valuable chiral compounds. Mechanistic studies suggest that the present reaction undergoes highly regioselective and stereocontrolled sequential hydrosilylation and hydroboration processes.

摘要

手性富集的 1,1-硅基硼烷具有硅基和硼基,它们都以确定的取向连接到同一个手性碳中心。由于这些手性多功能化合物可能提供两个合成手性,因此它们在不对称合成以及药物化学中具有很高的价值。尽管具有潜在的用途,但它们的有效合成方法却很少。为了解决这个问题,实现了末端炔烃的对映选择性钴催化氢化/硼氢化级联反应。该方案构成了化学选择性、区域选择性和立体选择性的一个令人印象深刻的例子,其中两个不同的氢官能化反应由一组金属催化剂和配体进行精确控制,通常这需要两个单独的催化体系。手性富集的 1,1-硅基硼烷的下游转化导致了各种有价值的手性化合物。机理研究表明,本反应经历了高度区域选择性和立体控制的顺序氢化和硼氢化过程。

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