Issue 16, 2023

Photocatalytic defluorocarboxylation using formate salts as both a reductant and a carbon dioxide source

Abstract

Herein, we report a photocatalytic defluorocarboxylation of benzylic C(sp3)–F bonds using formate salts as both a reductant and a carbon dioxide source. A variety of benzyl fluorides, bearing primary or secondary C(sp3)–F bonds, undergo defluorinative carboxylation smoothly with HCOOK. This transition metal-free strategy provides a mild, efficient, and sustainable approach for accessing a series of valuable aryl acetic acids, such as flurbiprofen. This protocol also features low catalyst loading, mild reaction conditions, good functional group tolerance, and ready scalability and sustainability. Mechanistic investigations indicate that a carbon dioxide radical anion (CO2˙) is generated via hydrogen atom transfer (HAT) and acts as a strong reductant to promote single electron reduction of benzyl fluorides. The following nucleophilic attack of carbanions on CO2, both of which are in situ generated intermediates, delivers the desired products, demonstrating the high efficiency of the CO2 capture process.

Graphical abstract: Photocatalytic defluorocarboxylation using formate salts as both a reductant and a carbon dioxide source

Supplementary files

Article information

Article type
Communication
Submitted
21 4 2023
Accepted
21 7 2023
First published
21 7 2023

Green Chem., 2023,25, 6194-6199

Photocatalytic defluorocarboxylation using formate salts as both a reductant and a carbon dioxide source

S. Min, H. Song, S. Yan, R. Yuan, J. Ye, B. Wang, Y. Gui and D. Yu, Green Chem., 2023, 25, 6194 DOI: 10.1039/D3GC01299A

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