芳基
组合化学
化学
亲核细胞
催化作用
镍
基质(水族馆)
卤化物
化学选择性
烷基
乙醚
胺气处理
电化学
有机化学
海洋学
地质学
物理化学
电极
作者
Hai‐Jun Zhang,Longrui Chen,Martins S. Oderinde,Jacob T. Edwards,Yu Kawamata,Phil S. Baran
标识
DOI:10.1002/anie.202107820
摘要
Abstract The formation of aryl‐alkyl ether bonds through cross coupling of alcohols with aryl halides represents a useful strategic departure from classical S N 2 methods. Numerous tactics relying on Pd‐, Cu‐, and Ni‐based catalytic systems have emerged over the past several years. Herein we disclose a Ni‐catalyzed electrochemically driven protocol to achieve this useful transformation with a broad substrate scope in an operationally simple way. This electrochemical method does not require strong base, exogenous expensive transition metal catalysts (e.g., Ir, Ru), and can easily be scaled up in either a batch or flow setting. Interestingly, e‐etherification exhibits an enhanced substrate scope over the mechanistically related photochemical variant as it tolerates tertiary amine functional groups in the alcohol nucleophile.
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