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Reductive dearomative arylcarboxylation of indoles with CO via visible-light photoredox catalysis

Nature Communications, ISSN: 2041-1723, Vol: 11, Issue: 1, Page: 3263
2020
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Article Description

Catalytic reductive coupling of two electrophiles and one unsaturated bond represents an economic and efficient way to construct complex skeletons, which is dominated by transition-metal catalysis via two electron transfer. Herein, we report a strategy of visible-light photoredox-catalyzed successive single electron transfer, realizing dearomative arylcarboxylation of indoles with CO. This strategy avoids common side reactions in transition-metal catalysis, including ipso-carboxylation of aryl halides and β-hydride elimination. This visible-light photoredox catalysis shows high chemoselectivity, low loading of photocatalyst, mild reaction conditions (room temperature, 1 atm) and good functional group tolerance, providing great potential for the synthesis of valuable but difficultly accessible indoline-3-carboxylic acids. Mechanistic studies indicate that the benzylic radicals and anions might be generated as the key intermediates, thus providing a direction for reductive couplings with other electrophiles, including DO and aldehyde.

Bibliographic Details

Zhou, Wen-Jun; Wang, Zhe-Hao; Liao, Li-Li; Jiang, Yuan-Xu; Cao, Ke-Gong; Ju, Tao; Li, Yiwen; Cao, Guang-Mei; Yu, Da-Gang

Springer Science and Business Media LLC

Chemistry; Biochemistry, Genetics and Molecular Biology; Physics and Astronomy

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