有机硅
机械化学
催化作用
化学
纳米技术
电子转移
硅
压电
球磨机
组合化学
材料科学
有机化学
复合材料
作者
Xiaohong Wang,Xuemei Zhang,X. He,Guangqing Guo,Qian Huang,Fengzhi You,Qingqing Wang,Ruiling Qu,Fei Zhou,Zhong Lian
标识
DOI:10.1002/anie.202410334
摘要
The 1,2-hydroxysilylation of alkenes is crucial for synthesizing organosilicon compounds which are key intermediates in material science, pharmaceuticals, and organic synthesis. The development of strategies employing hydrogen atom transfer pathways is currently hindered by the existence of various competing reactions. Herein, we reported a novel mechanochemical strategy for the triphasic 1,2-hydroxysilylation of alkenes through a single-electron-transfer pathway. Our approach not only circumvents competitive reactions to enable the first-ever 1,2-hydroxysilylation of unactivated alkenes but also pioneers the research in mechanic force-induced triphasic reactions under ambient conditions. This gentle method offers excellent compatibility with various functional groups, operates under simple and solvent-free conditions, ensures rapid reaction time. Preliminary mechanistic investigations suggest that silylboronate can be transformed to a silicon radical by highly polarized Li2TiO3 particles and oxygen under ball-milling condition.
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