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Mechanistic and Synthetic Implications of the Diol-Ritter Reaction: Unexpected Yet Reversible Pathways in the Regioselective Synthesis of Vicinal-Aminoalcohols.
Ondari, Mark E; Klosin, Jerzy; Froese, Robert D J; Kruper, William R; MacDonald, Jason; Arriola, Dan J; Bell, Bruce M; Briggs, John R; Kruper, William J.
Afiliación
  • Ondari ME; Corteva Agriscience, Agriculture Division of DowDupont , 1710 Building , Midland , Michigan 48674 , United States.
  • Klosin J; Corporate R&D , The Dow Chemical Company , 1776 Building , Midland , Michigan 48674 , United States.
  • Froese RDJ; Corporate R&D , The Dow Chemical Company , 1776 Building , Midland , Michigan 48674 , United States.
  • Kruper WR; Corteva Agriscience, Agriculture Division of DowDupont , 1710 Building , Midland , Michigan 48674 , United States.
  • MacDonald J; Corteva Agriscience, Agriculture Division of DowDupont , 1710 Building , Midland , Michigan 48674 , United States.
  • Arriola DJ; Corporate R&D , The Dow Chemical Company , 1776 Building , Midland , Michigan 48674 , United States.
  • Bell BM; Corporate R&D , The Dow Chemical Company , 1776 Building , Midland , Michigan 48674 , United States.
  • Briggs JR; Corporate R&D , The Dow Chemical Company , 1776 Building , Midland , Michigan 48674 , United States.
  • Kruper WJ; Michigan State University St. Andrews , Midland , Michigan 48674 , United States.
J Org Chem ; 84(8): 4715-4722, 2019 04 19.
Article en En | MEDLINE | ID: mdl-30428673
The Ritter reaction of 1,2-diolmonoesters with nitriles to 1- vic-amido-2-esters proceeds through dioxonium and nitrilium cation intermediates. To provide the basis for the reaction mechanism, novel forms of these cations were isolated, characterized, and studied by spectroscopic methods and single crystal X-ray analysis. Ground and transition state energies were determined both experimentally and theoretically. Taken together, these data suggest that the reaction proceeds via rapid formation of the dioxonium cation 9, followed by rate determining yet reversible ring opening by acetonitrile to the corresponding nitrilium cation 10 (computed Δ G⧧ = 24.7 kcal at 50 °C). Rapid, irreversible hydration of the latter affords the corresponding vic-acetamido ester. Controlled addition of H2O to the dioxonium cation 9 in acetonitrile- d3 results in near-quantitative production of deuterated acetamido ester 13a. Kinetics of this conversion (9 to 13a) are biphasic, and the slow phase is ascribed to either direct cation 9 attack by acetamide to form cation 16 via O-alkylation or by reversible ether formation. Deuterium labeling studies suggest O-alkylated cation 16 does not directly isomerize to N-alkylated cation 18; instead, it reverts to vic-amidoester 13a via the nitrilium pathway. Preliminary results indicate high regioselectivity for primary amide formation in the diol-Ritter sequence.

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Revista: J Org Chem Año: 2019 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Revista: J Org Chem Año: 2019 Tipo del documento: Article País de afiliación: Estados Unidos