立体中心
分子间力
区域选择性
烷基化
化学
催化作用
亲核细胞
酚类
芳香性
组合化学
有机化学
对映选择合成
分子
作者
Xiang Gao,Tian-Jiao Han,Beibei Li,Xiaoxiao Hou,Yuan‐Zhao Hua,Shi-Kun Jia,Xiao Xiao,Min‐Can Wang,Donghui Wei,Guang‐Jian Mei
标识
DOI:10.1038/s41467-023-40891-w
摘要
Abstract The catalytic asymmetric dearomatization (CADA) reaction has proved to be a powerful protocol for rapid assembly of valuable three-dimensional cyclic compounds from readily available planar aromatics. In contrast to the well-studied indoles and naphthols, phenols have been considered challenging substrates for intermolecular CADA reactions due to the combination of strong aromaticity and potential regioselectivity issue over the multiple nucleophilic sites (O, C2 as well as C4). Reported herein are the chiral phosphoric acid-catalyzed divergent intermolecular CADA reactions of common phenols with azoalkenes, which deliver the tetrahydroindolone and cyclohexadienone products bearing an all-carbon quaternary stereogenic center in good yields with excellent ee values. Notably, simply adjusting the reaction temperature leads to the chemo-divergent intermolecular (3 + 2) and alkylation dearomatization reactions. Moreover, the stereo-divergent synthesis of four possible stereoisomers in a kind has been achieved via changing the sequence of catalyst enantiomers.
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