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Anion-Initiated Trifluoromethylation by TMSCF3: Deconvolution of the Siliconate-Carbanion Dichotomy by Stopped-Flow NMR/IR.
Johnston, Craig P; West, Thomas H; Dooley, Ruth E; Reid, Marc; Jones, Ariana B; King, Edward J; Leach, Andrew G; Lloyd-Jones, Guy C.
Afiliação
  • Johnston CP; EaStChem , University of Edinburgh , Joseph Black Building, David Brewster Road , Edinburgh , EH9 3FJ , U.K.
  • West TH; EaStChem , University of Edinburgh , Joseph Black Building, David Brewster Road , Edinburgh , EH9 3FJ , U.K.
  • Dooley RE; EaStChem , University of Edinburgh , Joseph Black Building, David Brewster Road , Edinburgh , EH9 3FJ , U.K.
  • Reid M; EaStChem , University of Edinburgh , Joseph Black Building, David Brewster Road , Edinburgh , EH9 3FJ , U.K.
  • Jones AB; EaStChem , University of Edinburgh , Joseph Black Building, David Brewster Road , Edinburgh , EH9 3FJ , U.K.
  • King EJ; TgK Scientific Limited , 7 Long's Yard, St Margaret's Street , Bradford-on-Avon , BA15 1DH , U.K.
  • Leach AG; School of Pharmacy and Biomolecular Sciences , Liverpool John Moores University , Byrom Street , Liverpool , L3 3AF , U.K.
  • Lloyd-Jones GC; EaStChem , University of Edinburgh , Joseph Black Building, David Brewster Road , Edinburgh , EH9 3FJ , U.K.
J Am Chem Soc ; 140(35): 11112-11124, 2018 09 05.
Article em En | MEDLINE | ID: mdl-30080973
ABSTRACT
The mechanism of CF3 transfer from R3SiCF3 (R = Me, Et, iPr) to ketones and aldehydes, initiated by M+X- (<0.004 to 10 mol %), has been investigated by analysis of kinetics (variable-ratio stopped-flow NMR and IR), 13C/2H KIEs, LFER, addition of ligands (18-c-6, crypt-222), and density functional theory calculations. The kinetics, reaction orders, and selectivity vary substantially with reagent (R3SiCF3) and initiator (M+X-). Traces of exogenous inhibitors present in the R3SiCF3 reagents, which vary substantially in proportion and identity between batches and suppliers, also affect the kinetics. Some reactions are complete in milliseconds, others take hours, and others stall before completion. Despite these differences, a general mechanism has been elucidated in which the product alkoxide and CF3- anion act as chain carriers in an anionic chain reaction. Silyl enol ether generation competes with 1,2-addition and involves protonation of CF3- by the α-C-H of the ketone and the OH of the enol. The overarching mechanism for trifluoromethylation by R3SiCF3, in which pentacoordinate siliconate intermediates are unable to directly transfer CF3- as a nucleophile or base, rationalizes why the turnover rate (per M+X- initiator) depends on the initial concentration (but not identity) of X-, the identity (but not concentration) of M+, the identity of the R3SiCF3 reagent, and the carbonyl/R3SiCF3 ratio. It also rationalizes which R3SiCF3 reagent effects the most rapid trifluoromethylation, for a specific M+X- initiator.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article