Visible-Light-Promoted Formal [4 + 3] Radical Annulation of Vinyldiazos: Access to Fluorinated Cyclohepta[ b ]indoles

Abstract Cyclohepta[b]indoles are important nitrogen-containing heterocycles, yet their efficient synthesis remains challenging. Herein, we report a visible-light-promoted formal [4 + 3] cyclization of 3-difluorobromoacetylindoles with vinyldiazos through a photoredox cascade radical process. This method provides straightforward access to a broad range of fluorinated dihydrocyclohepta[b]indole derivatives in good to excellent yields. The reaction features mild conditions, broad substrate scope, good functional-group tolerance, and operational simplicity. Gram-scale synthesis, product derivatizations, and late-stage modification of complex bioactive molecules further demonstrate the synthetic utility of this protocol.

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Publication Details

Journal
Organic Letters
Published
2026-10-07
DOI
https://doi.org/10.1021/acs.orglett.6c03611
Primary Topic
Radical Photochemical Reactions
Type
article
Field-Weighted Citation Impact
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article

Visible-Light-Promoted Formal [4 + 3] Radical Annulation of Vinyldiazos: Access to Fluorinated Cyclohepta[ b ]indoles

Yufei Zhang, Xiang Li, Huijuan Huang, Yi Li et al.
Organic Letters
Radical Photochemical Reactions
article

Visible-Light-Promoted Formal [4 + 3] Radical Annulation of Vinyldiazos: Access to Fluorinated Cyclohepta[ b ]indoles

Yufei Zhang, Xiang Li, Huijuan Huang, Yi Li, Yecong Chang
article en

Abstract

Abstract Cyclohepta[b]indoles are important nitrogen-containing heterocycles, yet their efficient synthesis remains challenging. Herein, we report a visible-light-promoted formal [4 + 3] cyclization of 3-difluorobromoacetylindoles with vinyldiazos through a photoredox cascade radical process. This method provides straightforward access to a broad range of fluorinated dihydrocyclohepta[b]indole derivatives in good to excellent yields. The reaction features mild conditions, broad substrate scope, good functional-group tolerance, and operational simplicity. Gram-scale synthesis, product derivatizations, and late-stage modification of complex bioactive molecules further demonstrate the synthetic utility of this protocol.

Organic Letters
Fuzhou University (CN)
Openalex Percentile: Top 25%
Radical Photochemical Reactions
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