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首页> 外文期刊>Angewandte Chemie >Electrophotocatalysis with a Trisaminocyclopropenium Radical Dication
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Electrophotocatalysis with a Trisaminocyclopropenium Radical Dication

机译:用三氨基酰氯丙烯酸分解的电泳分析

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摘要

Visible-light photocatalysis and electrocatalysis are two powerful strategies for the promotion of chemical reactions. Here, these two modalities are combined in an electrophotocatalytic oxidation platform. This chemistry employs a trisaminocyclopropenium (TAC) ion catalyst, which is electrochemically oxidized to form a cyclopropenium radical dication intermediate. The radical dication undergoes photoexcitation with visible light to produce an excited-state species with oxidizing power (3.33 V vs. SCE) sufficient to oxidize benzene and halogenated benzenes via single-electron transfer (SET), resulting in C-H/N-H coupling with azoles. A rationale for the strongly oxidizing behavior of the photoexcited species is provided, while the stability of the catalyst is rationalized by a particular conformation of the cis-2,6-dimethylpiperidine moieties.
机译:可见光的光催化和电催化是促进化学反应的两种强大策略。 这里,这两种方式在电泳催化氧化平台中组合。 该化学采用三氨基环丙烯鎓(TAC)离子催化剂,其电化学氧化以形成环丙烯基自由基中间体。 激进的直接标准经历可见光的可见光,以产生足以通过单电子转移(设定)氧化苯和卤代苯的氧化功率(3.33V与Sce)的激发态物种,得到C-H / N-H偶联与氮。 提供了光透镜物质的强氧化行为的基本原理,而催化剂的稳定性通过CIS-2,6-二甲基哌啶部分的特定构象合理化。

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