Issue 42, 2024

Palladium and copper co-catalyzed chloro-arylation of gem-difluorostyrenes – use of a nitrite additive to suppress β-F elimination

Abstract

The installation of fluorine and fluorinated functional groups in organic molecules perturbs the physicochemical properties of those molecules and enables the development of new therapeutics, agrichemicals, biological probes and materials. However, current synthetic methodologies cannot access some fluorinated functional groups and fluorinated scaffolds. One such group, the gem-difluorobenzyl motif, might be convergently synthesized by reacting a nucleophilic aryl precursor and an electrophilic gem-difluoroalkene. Previous attempts have relied on forming unstable anionic or organometallic intermediates that rapidly decompose through a β-F elimination process to deliver monofluorovinyl products. In contrast, we report a fluorine-retentive palladium and copper co-catalyzed chloro-arylation of gem-difluorostyrenes that takes advantage of a nitrite (NO2) additive to avoid the favorable β-F elimination pathway that forms monofluorinated products, instead delivering difluorinated products.

Graphical abstract: Palladium and copper co-catalyzed chloro-arylation of gem-difluorostyrenes – use of a nitrite additive to suppress β-F elimination

Supplementary files

Article information

Article type
Edge Article
Submitted
24 Jul 2024
Accepted
28 Sep 2024
First published
01 Oct 2024
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2024,15, 17571-17578

Palladium and copper co-catalyzed chloro-arylation of gem-difluorostyrenes – use of a nitrite additive to suppress β-F elimination

A. J. Intelli, C. Z. Wayment, R. T. Lee, K. Yuan and R. A. Altman, Chem. Sci., 2024, 15, 17571 DOI: 10.1039/D4SC04939J

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