硼酸化
化学
光催化
可见光谱
组合化学
电子转移
有机合成
光化学
催化作用
有机化学
芳基
烷基
物理
光电子学
作者
Shengfei Jin,Hang T. Dang,Graham C. Haug,Ru He,Viet D. Nguyen,Vu T. Nguyen,Hadi D. Arman,Kirk S. Schanze,Oleg V. Larionov
摘要
Boronic acids are centrally important functional motifs and synthetic precursors. Visible light-induced borylation may provide access to structurally diverse boronates, but a broadly efficient photocatalytic borylation method that can effect borylation of a wide range of substrates, including strong C–O bonds, remains elusive. Herein, we report a general, metal-free visible light-induced photocatalytic borylation platform that enables borylation of electron-rich derivatives of phenols and anilines, chloroarenes, as well as other haloarenes. The reaction exhibits excellent functional group tolerance, as demonstrated by the borylation of a range of structurally complex substrates. Remarkably, the reaction is catalyzed by phenothiazine, a simple organic photocatalyst with MW < 200 that mediates the previously unachievable visible light-induced single electron reduction of phenol derivatives with reduction potentials as negative as approximately – 3 V versus SCE by a proton-coupled electron transfer mechanism. Mechanistic studies point to the crucial role of the photocatalyst–base interaction.
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