Mechanism of Preferential Hydrogenation of Hydroxymethyl Group to Aldehyde Group in 5-Hydroxymethylfurfural over W C-Based Catalyst.

ChemSusChem

Key Laboratory of Green Chemistry and Technology, Ministry of Education, College of Chemistry, Sichuan University, No.24 South Section 1, Yihuan Road, Chengdu, Sichuan, 610065, P.R. China.

Published: July 2022

A W C cluster was used to model a W C catalyst with the armchair model of activated carbon support, noted as W C /AC. Over W C /AC, the mechanism for the hydrogenation of both -H OH and -CHO groups in 5-hydroxymethylfurfural (HMF) was theoretically studied in tetrahydrofuran at GGA-PBE/DNP level. 5-Methylfurfural was the major product from only hydrodehydration of the -CH OH group, whereas 2,5-dihydroxymethylfuran was the minor product from the hydrogenation of both -CH OH and -CHO groups. The rate-determining steps were concerned with the -C(H) -H bond formation for the hydrodehydration of -CH OH group, and the -(OH)(H)-H bond formation for the hydrogenation of -CHO group. Kinetically, W-sites promoted the hydrodehydration of -CH OH group and inhibited the hydrogenation of -CHO group. This stemmed from the strong Lewis acidity of W-sites, which easily accepted the lone-pair electrons of the oxygen atom in the -C(OH)(H)- group, making -C(OH)(H)-H bond formation hard, and hampering the hydrogenation of the -CHO group.

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http://dx.doi.org/10.1002/cssc.202200174DOI Listing

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