化学
乙烯基
激进的
电子顺磁共振
位阻效应
组合化学
催化作用
光化学
烷基
自由基离子
有机化学
离子
核磁共振
物理
作者
Xiaowen Wang,Ruixue Li,Yang Deng,Zhi Guan,Chusheng Huang,Yan‐Hong He
标识
DOI:10.26434/chemrxiv-2022-fjlf3-v2
摘要
Diaryl alcohol moieties are widespread in pharmaceuticals. Existing methods for the synthesis of diaryl alcohols require the use of pre-functionalized benzylic alcohols, aromatic aldehydes or ketones as starting materials. Herein, the first convergent paired electrochemical approach to the direct hydroxylarylation of unactivated benzylic carbons (sp3/sp2/sp) is declared. This protocol features direct functionalization of unactivated benzylic C(sp3)–H bonds and benzylic sp2/sp-carbons, mild conditions (open air, room temperature), environmentally friendly procedure (without any external catalyst/mediator/additive), and direct access to sterically hindered alcohols from inexpensive and readily available alkyl/alkenyl/alkynylbenzenes. Mechanistic studies, including divided-cell experiments, isotope labeling, radical trapping, electron paramagnetic resonance (EPR), reaction kinetics, and cyclic voltammetry, strongly support the proposed radical-radical cross-coupling between transient ketyl radicals and persistent radical anions. Gram-scale synthesis and diversification of drug derivative have visualized the tremendous potential of this protocol for practical applications.
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