电催化剂
卤化物
光催化
芳基
催化作用
电泳剂
化学
卤代芳基
醛
还原消去
光催化
光化学
杂原子
金属化
机械化学
偶联反应
组合化学
电化学
有机化学
钯
物理化学
烷基
戒指(化学)
电极
作者
Chen Zhu,Shao‐Chi Lee,Haifeng Chen,Huifeng Yue,Magnus Rueping
标识
DOI:10.1002/ange.202204212
摘要
Abstract Herein, we report a reductive cross‐coupling reaction of α ‐oxy halides, simply generated from aldehydes, with a series of C( sp 2 )‐ and C( sp )‐electrophiles. A wide range of aryl and heteroatom aryl halides, vinyl bromides, alkynyl bromides, and acyl chlorides react with unhindered and hindered aldehyde‐derived α ‐oxy halides by providing protected alcohols as well as α‐hydroxy ketones. Noteworthy, the reductive couplings are achieved not only through thermal catalysis with the use of metal reductants but also by photocatalysis, electrochemistry, and mechanochemistry. The unrestricted interchange of the four strategies indicates their underlying mechanistic similarities. The generation of Ni I intermediate is proposed to be the key point for ketyl radical formation via a single‐electron transfer (SET) event, which was rationalized by an array of control experiments and density functional theory (DFT) calculations.
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