Visible light-mediated pyridylsilylation of olefins through hydrogen atom transfer

Abstract

A visible light-mediated synthesis protocol for the three-component pyridylsilylation of olefins to access β-pyridyl silicons has been developed. The reaction cascade is initiated by an in situ generated methoxy radical enabled by EDA complexes formed between the electron-deficient N-methoxypyridinium salts and a base. The reaction using hydrosilane as the silicon source to access silyl radical proceeds well via hydrogen atom transfer process between a silane Si–H bond and the methoxy radical. This protocol features exogenous photocatalyst-free conditions and high atom economy, thereby providing a powerful synthon for preparing silyl- and pyridyl-containing compounds with excellent functional group compatibility. Therefore, it is expected that this method will find applications in synthetic chemistry and drug discovery.

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Article information

Article type
Research Article
Submitted
14 Jan 2025
Accepted
21 Feb 2025
First published
22 Feb 2025

Org. Chem. Front., 2025, Accepted Manuscript

Visible light-mediated pyridylsilylation of olefins through hydrogen atom transfer

S. Wang, T. Yuan, J. Liang, X. Liang, X. Deng, Z. Xu, Y. Hu and Y. He, Org. Chem. Front., 2025, Accepted Manuscript , DOI: 10.1039/D5QO00085H

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