异喹啉
化学选择性
化学
催化作用
喹啉
组合化学
转移加氢
氢原子
还原(数学)
有机化学
烷基
钌
几何学
数学
作者
De‐Hai Liu,Kyogo Nagashima,Hui Liang,Xue‐Lin Yue,Yunpeng Chu,Shuming Chen,Jiajia Ma
标识
DOI:10.1002/anie.202312203
摘要
(Hetero)arene reduction is one of the key avenues for synthesizing related cyclic alkenes and alkanes. While catalytic hydrogenation and Birch reduction are the two broadly utilized approaches for (hetero)arene reduction across academia and industry over the last century, both methods have encountered significant chemoselectivity challenges. We hereby introduce a highly chemoselective quinoline and isoquinoline reduction protocol operating through selective energy transfer (EnT) catalysis, which enables subsequent hydrogen atom transfer (HAT). The design of this protocol bypasses the conventional metric of reduction reaction, that is, the reductive potential, and instead relies on the triplet energies of the chemical moieties and the kinetic barriers of energy and hydrogen atom transfer events. Many reducing labile functional groups, which were incompatible with previous (hetero)arene reduction reactions, are retained in this reaction. We anticipate that this protocol will trigger the further advancement of chemoselective arene reduction and enable the current arene-rich drug space to escape from flatland.
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