4.4 Article

Mechanism for the reduction of ketones to the corresponding alcohols using supercritical 2-propanol

Journal

TETRAHEDRON
Volume 63, Issue 6, Pages 1429-1434

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.tet.2006.11.071

Keywords

supercritical alcohol; Meerwein-Ponndorf-Verley reduction; kinetic-isotope effect; substituent effect; concerted mechanism

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The mechanism for the reduction of ketones into the corresponding alcohols using supercritical 2-propanol under non-catalytic conditions was investigated. The studies of the kinetic-isotope effect and isotopic-labeling for the reduction of benzophenone and acetophenone were carried out using (CH3)(2)CD(OH), (CH3)(2)CH(OD), (CD3)(2)CH(OH), and (CD3)(2)CD(OD). It was clarified that the alpha- and hydroxyl hydrogens on 2-propanol, respectively, transfer to the carbonyl C and O in the rate-determining step. These isotope studies also suggested that this reaction proceeds via a six-membered cyclic transition state analogous to that of the Meerwein-Ponndorf-Verley reduction. The fact that Hammett's reaction constant for this reaction was low, i.e., p=0.33, and that the reduction of the prochiral ketones using optically active alcohols at supercritical or high temperature provided optically active products also supported the existence of a six-membered cyclic transition state. (c) 2006 Elsevier Ltd. All rights reserved.

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