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钴(II)催化的立体选择性烯烃异构化反应:非环三取代烯烃的易得途径。

Cobalt(II)-Catalyzed Stereoselective Olefin Isomerization: Facile Access to Acyclic Trisubstituted Alkenes.

机构信息

Department of Chemistry and Biochemistry, Texas Tech University, Lubbock, Texas 79409, United States.

出版信息

J Am Chem Soc. 2020 May 13;142(19):8910-8917. doi: 10.1021/jacs.0c02101. Epub 2020 Apr 30.

Abstract

Stereoselective synthesis of trisubstituted alkenes is a long-standing challenge in organic chemistry, due to the small energy differences between and isomers of trisubstituted alkenes (compared with 1,2-disubstituted alkenes). Transition metal-catalyzed isomerization of 1,1-disubstituted alkenes can serve as an alternative approach to trisubstituted alkenes, but it remains underdeveloped owing to issues relating to reaction efficiency and stereoselectivity. Here we show that a novel cobalt catalyst can overcome these challenges to provide an efficient and stereoselective access to a broad range of trisubstituted alkenes. This protocol is compatible with both mono- and dienes and exhibits a good functional group tolerance and scalability. Moreover, it has proven to be a useful tool to construct organic luminophores and a deuterated trisubstituted alkene. A preliminary study of the mechanism suggests that a cobalt-hydride pathway is involved in the reaction. The high stereoselectivity of the reaction is attributed to both a π-π stacking effect and the steric hindrance between substrate and catalyst.

摘要

手性选择性合成三取代烯烃是有机化学中的一个长期存在的挑战,这是由于三取代烯烃(与 1,2-二取代烯烃相比)的 和 异构体之间的能量差异较小。过渡金属催化的 1,1-二取代烯烃异构化可以作为三取代烯烃的替代方法,但由于与反应效率和立体选择性相关的问题,该方法仍未得到充分发展。在这里,我们展示了一种新型钴催化剂可以克服这些挑战,提供一种高效和立体选择性的方法来合成广泛的三取代烯烃。该方案与单烯和双烯都兼容,并且具有良好的官能团耐受性和可扩展性。此外,它已被证明是构建有机发光体和氘代三取代烯烃的有用工具。对反应机理的初步研究表明,反应涉及钴-氢化物途径。反应的高立体选择性归因于π-π堆积效应和底物与催化剂之间的空间位阻。

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