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Asymmetric aerobic oxidation of α-hydroxy acid derivatives catalyzed by reusable, polystyrene-supported chiral N-salicylidene oxidovanadium tert-leucinates
Journal article   Peer reviewed

Asymmetric aerobic oxidation of α-hydroxy acid derivatives catalyzed by reusable, polystyrene-supported chiral N-salicylidene oxidovanadium tert-leucinates

Santosh B. Salunke, N.Seshu Babu and Chien-Tien Chen
Advanced Synthesis and Catalysis, Vol.353(8), pp.1234-1240
05/2011

Abstract

click chemistry direct immobilization enantioselective aerobic oxidation recyclable catalysts vanadyl compounds
The direct immobilization of two different C-5-propargyl ether-modified, chiral N-salicylidene vanadyl(V) tert-leucinates onto 4-azidomethyl-substituted polystyrene by click chemistry was examined. Among the eight different solvents investigated, the resulting polystyrene-supported catalysts promote the asymmetric, aerobic oxidation of α-hydroxy (thio)esters and amides with enantioselectivities of up to 99% ee (selectivity factor up to 41) in chloroform. These polystyrene-supported catalysts can be readily recovered by filtration and reused for at least four consecutive runs without discernible loss of reactivity and enantioselectivity. © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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