Cu(I)-Amido Complexes in the Ullmann Reaction: Reactions of Cu(I)-Amido Complexes with lodoarenes with and without Autocatalysis by CuI.

A series of Cu(I)-amido complexes both lacking ancillary ligands and containing 1,10-phenanthroline (phen) as ancillary ligand have been prepared. These complexes react with iodoarenes to form arylamine products, and this reactivity is consistent with the intermediacy of such complexes in catalytic...

Descripción completa

Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 132; no. 45; pp. 15860 - 15864
Autores principales: Giri, Ramesh, Hartwig, John F.
Formato: Artículo
Publicado: American Chemical Society 11/17/2010
Materias:
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:A series of Cu(I)-amido complexes both lacking ancillary ligands and containing 1,10-phenanthroline (phen) as ancillary ligand have been prepared. These complexes react with iodoarenes to form arylamine products, and this reactivity is consistent with the intermediacy of such complexes in catalytic Ullmann amination reactions. The stoichiometric reactions of the Cu(I)-amido complexes with iodoarenes are autocatalytic, with the free CuI generated during the reaction serving as the catalyst. Such autocatalytic behavior was not observed for reactions of iodoarenes with copper(I) amidates, imidates, or phenoxides. The selectivity of these complexes for two sterically distinct aryl halides under various conditions imply that the autocatalytic reaction proceeds by forming highly reactive [CuNPh] lacking phen. Reactions with radical probes imply that the reactions of phen-ligated Cu(I)-amido complexes with iodoarenes occur without the intermediacy of aryl radicals. Density functional theory calculations on the oxidative addition of lodoarenes to Cu(I) species are consistent with faster reactions of iodoarenes with CuNPh species lacking phen in DMSO than reactions of iodoarenes with LCuNPh in which L = phen. The free-energy barrier computed for the reaction of PhI with (DMSO)CuNPh was 21.8 kcaVmol, while that for the reaction of PhI with (phen)CuNPh was 33.4 kcaVmol.