Issue 15, 2024

A pyridine-boryl radical mediated cascade reaction towards the synthesis of indolizines: a computational mechanistic analysis

Abstract

The pyridine-boryl radical chemistry has witnessed significant advancements in the last decade, enabling an array of novel synthetic applications. In this context, density functional theory calculations provide a computational mechanistic analysis of the pyridine/B2pin2-mediated cascade synthesis of indolizines. The radical–radical cross-coupling pathway is dissected to be energetically more feasible than the conventionally assumed Minisci-type radical addition route. Furthermore, the computations reveal that a 1,4-O[B] migration step leads to the formation of zwitterionic intermediates, whose cyclization then generates the indolizine scaffolds. H-shuttles, generated from water, alcohol, or amine molecules, are found to play pivotal roles in facilitating the elimination or aromatization processes.

Graphical abstract: A pyridine-boryl radical mediated cascade reaction towards the synthesis of indolizines: a computational mechanistic analysis

Supplementary files

Article information

Article type
Research Article
Submitted
28 Mar 2024
Accepted
29 May 2024
First published
06 Jun 2024

Org. Chem. Front., 2024,11, 4168-4175

A pyridine-boryl radical mediated cascade reaction towards the synthesis of indolizines: a computational mechanistic analysis

X. Zhang, X. Cao, L. Wei, Z. Wang, Y. Wei, L. Xu and G. Huang, Org. Chem. Front., 2024, 11, 4168 DOI: 10.1039/D4QO00558A

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