| Literature DB >> 26081837 |
Panpan Tian1, Chao Feng2, Teck-Peng Loh2.
Abstract
Fluoroalkenes represent a class of privileged structural motifs, which found widespread use in medicinal chemistry. However, the synthetic access to fluoroalkenes was much underdeveloped with previous reported methods suffering from either low step economy or harsh reaction conditions. Here we present a Rh(III)-catalysed tandem C-H/C-F activation for the synthesis of (hetero)arylated monofluoroalkenes. The use of readily available gem-difluoroalkenes as electrophiles provides a highly efficient and operationally simple method for the introduction of α-fluoroalkenyl motifs onto (hetero)arenes under oxidant-free conditions. Furthermore, the employment of alcoholic solvent and the in-situ generated hydrogen fluoride are found to be beneficial in this transformation, indicating the possibility of the involvement of hydrogen bond activation mode with regards to the C-F bond cleavage step.Entities:
Year: 2015 PMID: 26081837 PMCID: PMC4557390 DOI: 10.1038/ncomms8472
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Figure 1Proposed method of rhodium-catalysed α-fluoroalkenylation.
(a) Oxidative alkenylation through Rh(III)-catalysed C–H activation. (b) Transition-metal-catalysed C–C bond formation through C–F activation. M, metal; TM, transition metal. (c) Base-promoted inter- or intramolecular nucleophilic addition or substitution of gem-difluoroalkenes with heteronucleophiles. X, hetero atom. (d) Pd/Cu-catalysed C–H fluoroalkenylation of heteroarenes. X, Br or CO2H. (e) In this report, oxidant-free Rh(III)-catalysed α-fluoroalkenylation of (hetero)arenes. The hydrogen bonding interaction is believed to promote the cleavage of C–F bond, which, in turn, renders this reaction redox neutral. DG, directing group.
Scope of gem-difluoroalkene for the C–H/C–F activation reaction.
Scope of indole and 2-arylpyridine derivatives in the C–H/C–F activation reaction.
Scope of benzamide in the C–H/C–F activation reaction.
Figure 2Control experiments and synthetic application.
(a) Base-promoted dehydrofluoration for the synthesis of 2-alkynyl indole derivatives. (b) Base-promoted dehydrofluoration for the synthesis of pyridine derivative. (c) Competitive reaction between 4f and 4g. (d) Control reactions between 1a and gem-dibromoalkene and mono-fluoroalkene.