化学
马尔科夫尼科夫法则
催化作用
光催化
质子化
氢化物
钴
烯烃
光化学
烷基
药物化学
三键
催化循环
有机化学
组合化学
金属
区域选择性
光催化
双键
离子
作者
Masanari Nakagawa,Yuki Matsuki,Kazunori Nagao,Hirohisa Ohmiya
摘要
We demonstrate Markovnikov hydroalkoxylation of unactivated alkenes using alcohols through a triple catalysis consisting of photoredox, cobalt, and Brønsted acid catalysts under visible light irradiation. The triple catalysis realizes three key elementary steps in a single catalytic cycle: (1) Co(III) hydride generation by photochemical reduction of Co(II) followed by protonation, (2) metal hydride hydrogen atom transfer (MHAT) of alkenes by Co(III) hydride, and (3) oxidation of the alkyl Co(III) complex to alkyl Co(IV). The precise control of protons and electrons by the three catalysts allows the elimination of strong acids and external reductants/oxidants that are required in the conventional methods.
科研通智能强力驱动
Strongly Powered by AbleSci AI