烷基
化学
还原消去
催化作用
组合化学
试剂
对映选择合成
电泳剂
镍
光催化
丙烯酸酯
溴化物
催化循环
光化学
有机化学
光催化
共聚物
聚合物
作者
Peng‐Cheng Qian,Haixing Guan,Yan‐En Wang,Qianqian Lü,Fan Zhang,Dan Xiong,Patrick J. Walsh,Jianyou Mao
标识
DOI:10.1038/s41467-021-26794-8
摘要
Abstract Nonsteroidal anti-inflammatory drug derivatives (NSAIDs) are an important class of medications. Here we show a visible-light-promoted photoredox/nickel catalyzed approach to construct enantioenriched NSAIDs via a three-component alkyl arylation of acrylates. This reductive cross-electrophile coupling avoids preformed organometallic reagents and replaces stoichiometric metal reductants by an organic reductant (Hantzsch ester). A broad range of functional groups are well-tolerated under mild conditions with high enantioselectivities (up to 93% ee) and good yields (up to 90%). A study of the reaction mechanism, as well as literature precedence, enabled a working reaction mechanism to be presented. Key steps include a reduction of the alkyl bromide to the radical, Giese addition of the alkyl radical to the acrylate and capture of the α-carbonyl radical by the enantioenriched nickel catalyst. Reductive elimination from the proposed Ni(III) intermediate generates the product and forms Ni(I).
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