Issue 23, 2023

Organo-catalyzed C2,3–H aminochalcogenation of indoles with secondary (aliphatic) amines

Abstract

Catalysis by small organic molecules capable of binding and activating substrates through attractive, non-covalent interactions has emerged as a highly significant approach in the fields of organic and organometallic chemistry. Notably, the utilization of organo-chalconium catalysts has gained substantial attention, owing to their remarkable catalytic properties, within the realms of synthetic chemistry and small molecule catalysis. In this study, we present a direct C2,3–H difunctionalization of indoles with unactivated amines (secondary aliphatic amines, more than 66 examples, up to 95% isolated yield), facilitated by the organo-chalconium catalyst generated through the reaction of iodine and chalconium reagents. This exceptional strategy not only provides a formidable tool for the assembly of intricate molecular architectures, but also affords the ability to perform late-stage functionalization of natural products and pharmaceutical compounds. Moreover, this advancement imparts unparalleled potential for optimizing the bioactivity and pharmacokinetic properties of existing drugs.

Graphical abstract: Organo-catalyzed C2,3–H aminochalcogenation of indoles with secondary (aliphatic) amines

Supplementary files

Article information

Article type
Research Article
Submitted
08 Sep 2023
Accepted
11 Oct 2023
First published
11 Oct 2023

Org. Chem. Front., 2023,10, 5886-5894

Organo-catalyzed C2,3–H aminochalcogenation of indoles with secondary (aliphatic) amines

X. Zhang, C. Liu, Y. Zhang, F. Shen, W. Wei, Z. Zhang and T. Liang, Org. Chem. Front., 2023, 10, 5886 DOI: 10.1039/D3QO01457F

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