Time-release catalysis for cascade hydrolytic hydrogenation of cellulose

Abstract

Valorization of cellulosic biomass into chemicals and fuels via multi-step reaction is necessary for achieving sustainable industry. However, one-pot direct transformation of cellulose into value-added chemicals like sorbitol via glucose intermediate through cascade pathways remains challenging due to the interplay between multiple catalytic sites and kinetics of different reaction pathways. Herein, inspired by time-release mechanisms used in medicines and fertilizers, carbon-encapsulated nickel phosphide (NiP@C) catalysts exhibiting time-release properties were synthesized through sequential chemical precipitation, hydrothermal treatment and thermal reduction steps using nickel nitrate, fulvic acid and (NH 4 ) 2 HPO 4 as precursors. The as-synthesized NiP@C served as a time-release catalyst for the one-pot hydrolysis-hydrogenation of cellulose to sorbitol by providing a continuous and adequate supply of H + for cellulose hydrolysis via a time-release mechanism, coupled with abundant Ni δ+ sites for sequential hydrogenation, thus achieved a balanced hydrolysis and hydrogenation process that afforded a high sorbitol yield of 84.5% at 200 o C within 3 h. The NiP@C catalyst demonstrated good recyclability due to its anti-oxidation capacity in air. The time-release catalysis strategy proposed in this work should have broad application in one-pot cascade reaction schemes requiring balanced multiple catalytic sites for converting renewable resources.

Supplementary files

Article information

Article type
Paper
Submitted
08 Apr 2026
Accepted
18 May 2026
First published
19 May 2026

Green Chem., 2026, Accepted Manuscript

Time-release catalysis for cascade hydrolytic hydrogenation of cellulose

J. Fu, S. Zhang, X. Qi, B. Qiu and R. L. Smith, Green Chem., 2026, Accepted Manuscript , DOI: 10.1039/D6GC02110G

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