NaH-Promoted One-Pot Oxidation/Aromatization and C-3H Chalcogenation of Indoline: Atmospheric Control-Based Selective Intermediates

Abstract

A sub-stoichiometric sodium hydride promoted strategy with diselenides and disulphides, has been devised for the one-pot cascade oxidation/arometization and regioselective C-3 selenium/sulfenylation of indolines under transition metal-free conditions. The newly introduced protocol facilitates the synthesis of C-3 chalcogenated indoles with exceptional flexibility and efficiency. The chalcogenation reaction was successfully performed under both aerobic and inert conditions leading to the formation of C-3 chalcogenated indoles via two different intermediates. The mechanistic insights were derived from various controlled experiments and trapping of reaction intermediates for both the conditions, structurally varifying them by spectral analysis. The preponderance of the radical route was validated by EPR spectroscopy and radical quenching experiments. A wide variety of 3-arylthioindoles and 3-arylselenylindoles containing electron-releasing and withdrawing substituents were obtained in high to excellent yields with this modest and environmentally benign protocol. Additionally, post-transformation of sulfenylated derivatives has further led to the generation of diarylsulfoxide core of pharmaceutical interest. The reaction is applicable to gram scale synthesis without significant loss in product yield, indicating its application for large-scale synthesis. Interestingly, the biological evaluation of the 5-bromo-3-((4-(trifluoromethyl)phenyl)selanyl)-1H-indole and 3-((4-chlorophenyl)thio)-1H-indole revealed significant activity against rapidly growing mycobacteria (RGM).

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Article information

Article type
Research Article
Submitted
27 Mar 2025
Accepted
21 May 2025
First published
31 May 2025

Org. Chem. Front., 2025, Accepted Manuscript

NaH-Promoted One-Pot Oxidation/Aromatization and C-3H Chalcogenation of Indoline: Atmospheric Control-Based Selective Intermediates

S. Majee, Km. Anjali, S. Agarwal, V. Poonia, A. K. Singh, B. Guchhait and D. Ray, Org. Chem. Front., 2025, Accepted Manuscript , DOI: 10.1039/D5QO00576K

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