硅氢加成
艾伦
对映选择合成
化学
区域选择性
烯烃
动力学分辨率
催化作用
配体(生物化学)
有机化学
组合化学
硅烷化
手性(物理)
炔丙基
均相催化
立体选择性
立体异构
镍
手性配体
轴手性
作者
Jin-Ping Wang,Qile Wu,T Liu,Yichen Wu,Peng Wang
摘要
Enantioselective hydrosilylation of allenes remains a significant challenge with a limited scope due to the difficulties in controlling both regioselectivities and enantioselectivities, despite it representing one of the most efficient manners for the preparation of optically pure allylsilanes. Here, we report a general platform for the efficient and modular preparation of diverse allylsilanes via nickel-catalyzed hydrosilylation of various allene derivatives, including mono-substituted allenes and 1,3-disubstituted allenes. Enabled by a newly developed SPSiOL-derived diphosphinite ligand (SPSiOP), hydrosilylation of mono-substituted allenes has been realized with excellent regioselectivity and enantioselectivity. Moreover, the first kinetic resolution of racemic 1,3-disubstituted allenes has been disclosed using a commercially available chiral QuinoxP* ligand, affording a series of secondary allylsilanes with high stereo induction (S factor up to 133). The resulting enantioenriched allylsilanes are highly synthetically useful, which has been demonstrated by a variety of transformations of the silyl and alkene functional groups, culminating in efficient synthesis of silacycles and formal synthesis of several bioactive molecules.
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