Issue 100, 2025

Cobalt(iii)-catalysed annulation of indoles with phenylethynyl ether for the synthesis of the ABC ring system of ergot alkaloids

Abstract

A rational strategy has been developed to construct the ABC ring of ergot alkaloids, with this strategy involving the C4 alkenylation of indole followed by an annulation process triggered by β-carbon elimination. This innovative approach is notable as the first reported one-step synthesis of the ABC ring of an ergot alkaloid skeleton achieved through a C–H activation process. Moreover, a high-resolution mass spectrometry (HRMS) analysis identified a six-membered cobaltacycle intermediate, corroborating the suggested process. This one-step synthesis, through C–H activation, provides a streamlined and sustainable approach for forming ergot analogs, with broad substrate tolerance and efficient atom utilization, thus representing a valuable advancement in indole functionalization.

Graphical abstract: Cobalt(iii)-catalysed annulation of indoles with phenylethynyl ether for the synthesis of the ABC ring system of ergot alkaloids

Supplementary files

Article information

Article type
Communication
Submitted
14 Oct 2025
Accepted
13 Nov 2025
First published
13 Nov 2025

Chem. Commun., 2025,61, 19937-19940

Cobalt(III)-catalysed annulation of indoles with phenylethynyl ether for the synthesis of the ABC ring system of ergot alkaloids

A. Ghosh, A. Panda, P. S. Mahulkar and P. C. Ravikumar, Chem. Commun., 2025, 61, 19937 DOI: 10.1039/D5CC05860K

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