Defluoroalkylation of Trifluoromethane with Organolithium Reagents: Mechanism and Synthesis of Fluoroalkenes

H Hodan R. Warsame (Department of Chemistry Molecular Sciences Research Hub Imperial College London Shepherds Bush London W12 0BZ Unites Kingdom) S Sarah L. Patrick (Department of Chemistry Molecular Sciences Research Hub Imperial College London Shepherds Bush London W12 0BZ Unites Kingdom) J James A. Bull (Department of Chemistry Molecular Sciences Research Hub Imperial College London Shepherds Bush London W12 0BZ Unites Kingdom) P Philip W. Miller (Department of Chemistry) M Mark R. Crimmin (Department of Chemistry)

Abstract

Abstract Trifluoromethane (HCF 3 , HFC‐23) is a byproduct of fluoropolymer production that has limited applications. It is often stored or destroyed at the point of production, but if released into the environment is a potent greenhouse gas with a global warming potential of 14 600 times that of CO 2 . State‐of‐the‐art chemical technologies for upgrading HCF 3 typically occur with conservation of the CF 3 group. These approaches will come under increased scrutiny as concern over the environmental impact of perfluoroalkyl substances (PFAS) continues to grow. A more sustainable approach involves synthetic transformations that repurpose the atomic content of HCF 3 while also destroying the CF 3 group. In this paper, we report a rare example of the transformation of HCF 3 into a fluoroalkene functional group through defluoroalkylation. We rationalise product formation through DFT calculations, scale‐up the synthesis through continuous flow methods, and show that a fluoroalkene reagent derived from HCF 3 is a competent nucleophile for the fluoroethenylation of a range of aldehydes.

Article Details

Volume / Issue Vol. 65, Issue 1
Published January 02, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (5)

H

Hodan R. Warsame

Department of Chemistry Molecular Sciences Research Hub Imperial College London Shepherds Bush London W12 0BZ Unites Kingdom

S

Sarah L. Patrick

Department of Chemistry Molecular Sciences Research Hub Imperial College London Shepherds Bush London W12 0BZ Unites Kingdom

J

James A. Bull

Department of Chemistry Molecular Sciences Research Hub Imperial College London Shepherds Bush London W12 0BZ Unites Kingdom

P

Philip W. Miller

Department of Chemistry

M

Mark R. Crimmin

Department of Chemistry