Issue 14, 2022

Hydroxyl-assisted selective epoxidation of perillyl alcohol with hydrogen peroxide by vanadium-substituted phosphotungstic acid hinged on imidazolyl activated carbon

Abstract

Through the amidation reaction with 2-methylimidazole, organic basic groups were introduced into the carboxyl sites of activated carbon to obtain imidazolyl activated carbon. H3+xPW12−xVxO40 (x = 0, 1, 2, or 3) was chemically bonded to the surface, which was used to catalyze the oxidation of perillyl alcohol by hydrogen peroxide. After reaction at 60 °C for 5 h, AC-COIMIH+[H4PW10V2] could catalyze almost complete oxidation of the substrate, where the conversion reached 97.4%, the selectivity for the 1,2-epoxide was 80.0%, and the stereo configuration of the epoxide product was RR/SS = 5 : 3. In addition, the catalyst could be easily recovered via centrifugation and reused five times without any significant deactivation. By calculating the Fukui function of perillyl alcohol, we consider a proper explanation for the main product from the oxidation of the allyl alcohol. A cooperative epoxidation mechanism with electrostatic adsorption of a double bond, and hydrogen-bonded adsorption of hydroxyl was proposed.

Graphical abstract: Hydroxyl-assisted selective epoxidation of perillyl alcohol with hydrogen peroxide by vanadium-substituted phosphotungstic acid hinged on imidazolyl activated carbon

Supplementary files

Article information

Article type
Paper
Submitted
04 Jan 2022
Accepted
16 Feb 2022
First published
03 Mar 2022

New J. Chem., 2022,46, 6636-6645

Hydroxyl-assisted selective epoxidation of perillyl alcohol with hydrogen peroxide by vanadium-substituted phosphotungstic acid hinged on imidazolyl activated carbon

H. He, M. Zheng, Q. Liu, J. Liu, J. Zhao, Y. Zhuang, X. Liu, Q. Xu, S. R. Kirk and D. Yin, New J. Chem., 2022, 46, 6636 DOI: 10.1039/D2NJ00040G

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