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Nickel-catalyzed reductive coupling of alkyl halides with other electrophiles: concept and mechanistic considerations

机译:镍催化卤代烷与其他亲电子试剂的还原偶联:概念和机理考虑

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摘要

The formation of C-C bonds directly by catalytic reductive cross-coupling of two different electrophiles represents one of the practical synthetic protocols that differs from the conventional nucleophile/electrophile coupling methods. Particularly the reductive coupling of alkyl electrophiles with other electrophiles is still a challenge. This report summarizes the advances in the formation of C(sp3)-C(sp3) bonds between two alkyl electrophiles, with emphasis on the control of chemoselectivity that is exceedingly challenging to achieve due to similar structures and reactivities of two unactivated alkyl halides. The coupling of alkyl halides with aryl or acyl electrophiles was also discussed based on the chemical approach developed by our group, followed by a brief overview of the reactions of tertiary alkyl halides. In the end, a brief overview of the challenges in this exciting field was illustrated. Whereas the reaction mechanisms generating alkyl-alkyl products are proposed to involve reactions of Ni(I) species with alkyl halides to generate Ralkyl-Ni(III)-Ralkyl intermediates through a radical/Ni cage-rebound process, the obtained evidence seemingly supports that the radical chain mechanism governs the acylation and arylation of alkyl halides. The latter features a cage-escaped alkyl radical.
机译:通过两种不同亲电试剂的催化还原性交叉偶联直接形成C-C键代表了一种不同于常规亲核试剂/亲电试剂偶联方法的实用合成方案。特别是烷基亲电试剂与其他亲电试剂的还原偶联仍然是一个挑战。该报告总结了在两个烷基亲电体之间形成C(sp3)-C(sp3)键的进展,重点是对化学选择性的控制,由于两个未活化的烷基卤的相似结构和反应性,化学选择性的控制极具挑战性。还基于我们小组开发的化学方法,讨论了烷基卤化物与芳基或酰基亲电试剂的偶联,然后简要概述了叔烷基卤化物的反应。最后,简要说明了这一令人兴奋的领域中的挑战。尽管提出了产生烷基-烷基产物的反应机理,涉及Ni(I)物种与烷基卤化物的反应,以通过自由基/ Ni笼型-反弹过程生成R烷基-Ni(III)-R烷基中间体,但似乎获得的证据支持自由基链机制控制烷基卤的酰化和芳基化。后者的特征是笼状逃脱的烷基。

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