Direct C1–H Amination of Free NH Carbazoles Enabled by the Catellani Reaction

Abstract Carbazoles are valuable building blocks for emerging pharmaceuticals and bioactive compounds. However, methods to access C1–H-aminated carbazoles remain underdeveloped. Current approaches often require multistep syntheses or the use of toxic metals. Herein, we report the first Pd/NBE-catalyzed C1–H amination of NH-free carbazoles. The method introduces a broad range of cyclic amines onto carbazole scaffold and tolerates several functional groups, including acyl, pivaloyl, and halogen substituents. This approach expands the scope of the Catellani reactions to the direct amination of unprotected carbazoles, offering a concise entry to otherwise challenging C1-aminated scaffolds.

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Publication Details

Journal
Organic Letters
Published
2026-09-22
DOI
https://doi.org/10.1021/acs.orglett.6c03473
Primary Topic
Catalytic C–H Functionalization Methods
Type
article
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article

Direct C1–H Amination of Free NH Carbazoles Enabled by the Catellani Reaction

Ganesh Shivayogappa Sorabad, Nicola Della Ca’, Elena Motti, Paolo P. Mazzeo
Organic Letters
Catalytic C–H Functionalization Methods
article

Direct C1–H Amination of Free NH Carbazoles Enabled by the Catellani Reaction

Ganesh Shivayogappa Sorabad, Nicola Della Ca’, Elena Motti, Paolo P. Mazzeo
article en

Abstract

Abstract Carbazoles are valuable building blocks for emerging pharmaceuticals and bioactive compounds. However, methods to access C1–H-aminated carbazoles remain underdeveloped. Current approaches often require multistep syntheses or the use of toxic metals. Herein, we report the first Pd/NBE-catalyzed C1–H amination of NH-free carbazoles. The method introduces a broad range of cyclic amines onto carbazole scaffold and tolerates several functional groups, including acyl, pivaloyl, and halogen substituents. This approach expands the scope of the Catellani reactions to the direct amination of unprotected carbazoles, offering a concise entry to otherwise challenging C1-aminated scaffolds.

Organic Letters
University of Parma (IT)
Openalex Percentile: Top 21%
Catalytic C–H Functionalization Methods
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