| Literature DB >> 28873243 |
Jérémy Jacquet1, Khaled Cheaib1, Yufeng Ren1, Hervé Vezin2, Maylis Orio3, Sébastien Blanchard1, Louis Fensterbank1, Marine Desage-El Murr1,4.
Abstract
Nickel complexes have gained sustained attention as efficient catalysts in cross-coupling reactions and co-catalysts in dual systems due to their ability to react with radical species. Central to this reactivity is nickel's propensity to shuttle through several accessible redox states from Ni0 to NiIV . Here, we report the catalytic generation of trifluoromethyl radicals from a nickel complex bearing redox-active iminosemiquinone ligands. This unprecedented reactivity is enabled through ligand-based oxidation performing electron transfer to an electrophilic CF3+ source while the nickel oxidation state is preserved. Additionally, extension of this reactivity to a copper complex bearing a single redox equivalent is reported, thus providing a unified reactivity scheme. These results open new pathways in radical chemistry with redox-active ligands.Entities:
Keywords: CF3. radicals; nickel; redox-active ligand; single electron transfer
Year: 2017 PMID: 28873243 DOI: 10.1002/chem.201704049
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236