Shou-Cai Wang , Zi-Ren Chen , Fei Xue , Yong-Hong Zhang , Bin Wang , Shao-Feng Wu , Yu Xia , Weiwei Jin , Fanghua Ji , Chenjiang Liu
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引用次数: 0
Abstract
Direct C–H silylation of (thio)chromones was achieved by the combination of hydrogen atom transfer (HAT), photoredox and transition-metal catalysis under ambient air conditions. High regioselectivity, oxidant- and noble-metal-free conditions, and synergistic multiple catalysis were the major features of this protocol. Moreover, this approach can be safely conducted on the gram scale with hydrogen as the sole byproduct.
在环境空气条件下,通过氢原子转移(HAT)、光氧化还原(photoredox)和过渡金属催化(transition metal catalytic)的结合,实现了(thio)铬的直接C-H硅基化。高区域选择性、无氧化和无贵金属条件、协同多重催化是该工艺的主要特点。而且,这种方法可以安全地以克为单位进行,氢气是唯一的副产品