Ru(II)-Catalyzed Regioselective (3+2)-Annulation of Anilines with Allenes to Access 2-Vinylindoles

Abstract

Direct access to 2-vinylindole motifs from commercially available aniline precursors is an appealing yet challenging task.Conventional strategies often rely on pre-functionalized indoles or require harsh reaction conditions and so direct annulation of simple anilines for their synthesis remains an attractive alternative. Herein, we disclose a cost-effective Ru(II)-catalyzed regioselective (3+2)-annulation of N-pyridyl anilines with allenyl carbinol acetates to access 2-vinylindoles at room temperature. The reaction proceeds through an unprecedented 3,2-migratory insertion of allenyl carbinol acetates to form a Ru-alkenyl intermediate, which is elusive so far in C-H activation. Catalyst screening revealed that the regioselectivity of migratory insertion of allene is governed by the nature of the metal-salt. While Ru(II) favors the desired 3,2-insertion, Co(III) promoted 2,1-insertion leading to Co-σ-allyl intermediate. The synthetic process allows to access a large library of 2vinylindole derivatives from commercially available anilines in good to moderate yields under mild conditions. Interestingly, bis-annulation with the substrates having di-amino functionalities was also successfully carried out to access highly conjugated bisindole architectures. Additionally, the versatility of the protocol was showcased by carrying out late-stage modification of various natural products, gram-scale synthesis, and further functionalization of the products along with photophysical studies of 2-vinylindole derivative.

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Article information

Article type
Edge Article
Submitted
18 Aug 2025
Accepted
07 Dec 2025
First published
16 Dec 2025
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY license

Chem. Sci., 2026, Accepted Manuscript

Ru(II)-Catalyzed Regioselective (3+2)-Annulation of Anilines with Allenes to Access 2-Vinylindoles

C. Volla, O. P. Dash, A. Singh and R. K. Shukla, Chem. Sci., 2026, Accepted Manuscript , DOI: 10.1039/D5SC06303E

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