Electrophotocatalytic tri- or difluoromethylative cyclization of alkenes†

Danna Chen , Xuege Yang , Dongyin Wang , Yanni Li , Lou Shi , Deqiang Liang
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引用次数: 1

Abstract

We describe an electrophotocatalytic tri- or difluoromethylation/cyclization cascade of alkenes with fluoromethanesulfinate salts. This external-oxidant-free oxidative cyclization proceeds under mild electrode potentials yet is robust, and it is applicable to a broad range of alkenes, either activated or unactivated, affording a diverse array of fluoromethylated heterocycles with good functional-group tolerance using the inexpensive photocatalyst eosin Y. Of note is that an unactivated olefin is generally not accommodated by previous oxidative cyclization of alkenes unless a strong chemical oxidant is present. The protocol is amenable to the late-stage diversification of complex molecular architectures as well as a gram-scale synthesis, and sunlight could serve as the light source. Preliminary mechanistic studies suggest the merger of electrolysis with the reductive quenching photocatalytic cycle of eosin Y.

Abstract Image

烯烃的电光催化三氟甲基化或二氟甲基化环化†
我们描述了烯烃与氟甲磺酸盐的电子光催化三氟或二氟甲基化/环化级联反应。这种不含外部氧化剂的氧化环化反应在温和的电极电势下进行,但是稳健的,并且它适用于广泛的烯烃,无论是活化的还是未活化的,使用廉价的光催化剂曙红Y提供具有良好官能团耐受性的各种氟甲基化杂环。值得注意的是,除非存在强化学氧化剂,否则未活化的烯烃通常不会被烯烃的先前氧化环化所适应。该方案适用于复杂分子结构的后期多样化以及克级合成,阳光可以作为光源。初步的机理研究表明,电解与曙红Y的还原猝灭光催化循环相结合。
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CiteScore
7.80
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0.00%
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