Issue 10, 2014

Photoinduced HBr-catalyzed C–Si bond cleavage of benzylsilanes and their subsequent oxidation into benzoic acids with air as the terminal oxidant

Abstract

A photoinduced highly efficient C–Si bond cleavage reaction of benzylsilanes under the catalysis of HBr was developed. The in situ generated benzyl radical intermediates were aerobically oxidized into benzoic acids highly chemoselectively. In this transformation, HBr not only acted as the single electron transfer mediator for the initial C–Si bond cleavage, but also efficiently catalyzed the oxidation of benzaldehyde intermediates into benzoic acids.

Graphical abstract: Photoinduced HBr-catalyzed C–Si bond cleavage of benzylsilanes and their subsequent oxidation into benzoic acids with air as the terminal oxidant

Supplementary files

Article information

Article type
Research Article
Submitted
13 Aug 2014
Accepted
05 Oct 2014
First published
06 Oct 2014

Org. Chem. Front., 2014,1, 1201-1204

Author version available

Photoinduced HBr-catalyzed C–Si bond cleavage of benzylsilanes and their subsequent oxidation into benzoic acids with air as the terminal oxidant

J. Sun, Y. Wang, L. Han, D. Xu, Y. Chen, X. Peng and H. Guo, Org. Chem. Front., 2014, 1, 1201 DOI: 10.1039/C4QO00229F

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