Catalytic defluorinative ketyl-olefin coupling by halogen-atom transfer

Bellotti, Peter; Huang, Huan-Ming; Faber, Teresa; Laskar, Ranjini; Glorius, Frank

Research article (journal) | Peer reviewed

Abstract

Ketyl–olefin coupling reactions stand as one of the fundamental chemical transformations in synthetic chemistry and have been widely employed in the generation of complex molecular architectures and natural product synthesis. However, catalytic ketyl–olefin coupling, until the recent development of photoredox chemistry and electrosynthesis through single-electron transfer mechanisms, has remained largely undeveloped. Herein, we describe a new approach to achieve catalytic ketyl–olefin coupling reactions by a halogen-atom transfer mechanism, which provides innovative and efficient access to various gem-difluorohomoallylic alcohols under mild conditions with broad substrate scope. Preliminary mechanistic experimental and computational studies demonstrate that this radical-to-polar crossover transformation could be achieved by sequentially orchestrated Lewis acid activation, halogen-atom transfer, radical addition, single-electron reduction and β-fluoro elimination.

Details about the publication

JournalChemical science (Chem. Sci.)
Volume13
Issue26
Page range7855-7862
StatusPublished
Release year2022
DOI10.1039/d2sc02732a
Link to the full texthttps://pubs.rsc.org/en/content/articlelanding/2022/sc/d2sc02732a
KeywordsCatalysis; Coupling Reactions; Chemical Transformations; Computational Studies

Authors from the University of Münster

Bellotti, Peter
Professur für Organische Chemie (Prof. Glorius)
Faber, Teresa
Organic Chemistry Institute
Glorius, Frank
Professur für Organische Chemie (Prof. Glorius)