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首页> 外文期刊>Angewandte Chemie >Electrooxidative Rhodium-Catalyzed [5+2] Annulations via C-H/O-H Activations
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Electrooxidative Rhodium-Catalyzed [5+2] Annulations via C-H/O-H Activations

机译:通过C-H / O-H激活电氧化铑催化的[5 + 2]环化

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摘要

Electrooxidative annulations involving mild transition metal-catalyzed C-H activation have emerged as a transformative strategy for the rapid construction of five- and six-membered heterocycles. In contrast, we herein describe the first electrochemical metal-catalyzed [5+2] cycloadditions to assemble valuable seven-membered benzoxepine skeletons by C-H/O-H activation. The efficient alkyne annulation featured ample substrate scope, using electricity as the only oxidant. Mechanistic studies provided strong support for a rhodium(III/I) regime, involving a benzoxepine-coordinated rhodium(I) sandwich complex as the catalyst resting state, which was re-oxidized to rhodium(III) by anodic oxidation.
机译:涉及温和过渡金属催化的C-H活化的电氧化环已成为快速构建五元和六元杂环的一种变革策略。相比之下,我们在此描述了第一个电化学金属催化的[5+2]环加成反应,通过C-H/O-H活化组装有价值的七元苯并噻吩骨架。有效的炔烃环化反应具有充分的底物范围,使用电作为唯一的氧化剂。机理研究为铑(III/I)体系提供了强有力的支持,包括苯并噻吩配位铑(I)三明治复合物作为催化剂静止状态,通过阳极氧化将其重新氧化为铑(III)。

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