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镍催化实现了用于苄基碳氢键直接芳基化的收敛式成对电解。

Nickel catalysis enables convergent paired electrolysis for direct arylation of benzylic C-H bonds.

作者信息

Zhang Lei, Hu Xile

机构信息

Laboratory of Inorganic Synthesis and Catalysis, Institute of Chemical Sciences and Engineering, Ecole Polytechnique Fédérale de Lausanne (EPFL) ISCI-LSCI BCH 3305 1015 Lausanne Switzerland

出版信息

Chem Sci. 2020 Apr 27;11(39):10786-10791. doi: 10.1039/d0sc01445a.

Abstract

Convergent paired electrosynthesis is an energy-efficient approach in organic synthesis; however, it is limited by the difficulty to match the innate redox properties of reaction partners. Here we use nickel catalysis to cross-couple the two intermediates generated at the two opposite electrodes of an electrochemical cell, achieving direct arylation of benzylic C-H bonds. This method yields a diverse set of diarylmethanes, which are important structural motifs in medicinal and materials chemistry. Preliminary mechanistic study suggests oxidation of a benzylic C-H bond, Ni-catalyzed C-C coupling, and reduction of a Ni intermediate as key elements of the catalytic cycle.

摘要

收敛式成对电合成是有机合成中一种节能的方法;然而,它受到反应伙伴固有氧化还原性质难以匹配的限制。在这里,我们使用镍催化使在电化学电池两个相反电极上生成的两种中间体交叉偶联,实现苄基C-H键的直接芳基化。该方法产生了各种各样的二芳基甲烷,它们是药物化学和材料化学中的重要结构基序。初步机理研究表明,苄基C-H键的氧化、镍催化的C-C偶联以及镍中间体的还原是催化循环的关键要素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fd3/8162382/ce701af007a4/d0sc01445a-f1.jpg

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