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J Org Chem ; 78(14): 7194-8, 2013 Jul 19.
Article in English | MEDLINE | ID: mdl-23829207

ABSTRACT

The mechanism of base-catalyzed rearrangement of ring-substituted benzoins in aqueous methanol was examined by kinetic and product analyses. Substituent effects on the rate and equilibrium constants revealed that the kinetic process has a different electron demand compared to the equilibrium process. Reactions in deuterated solvents showed that the rate of H/D exchange of the α-hydrogen is similar to the overall rate toward the equilibrium state. A proton-inventory experiment using partially deuterated solvents showed a linear dependence of the rate on the deuterium fraction of the solvent, indicating that only one deuterium isotope effect contributes to the overall rate process. All these results point to a mechanism in which the rearrangement is initiated by the rate-determining α-hydrogen abstraction rather than a mechanism with initial hydroxyl hydrogen abstraction as in the general α-ketol rearrangement.


Subject(s)
Benzoin/chemistry , Hydroxides/chemistry , Potassium Compounds/chemistry , Catalysis , Kinetics , Methanol/chemistry , Molecular Structure
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