Highly dispersive and ultrafine Pd clusters were straightforwardly encapsulated within the crystals of Beta zeolite that effectively and stably catalyze aerobic organic oxidation reactions with shape-selectivity.
Directly
transforming carbohydrates into high value-added chemicals
provides an economic and sustainable path for the utilization of the
renewable biomass resource. Herein, we fabricated an efficient catalytic
system for the straightforward conversion of various carbohydrates
into 2,5-diformylfuran (DFF) by using vanadium oxide supported on
high-silica mordenite (MOR) zeolites in the presence of hydrochloric
acid. The synthesis of high-silica MOR zeolites was achieved in a
template-free dense system featuring energy savings and environmental
friendliness, delivering the SiO2/Al2O3 ratio up to 80. The conversion of fructose into DFF reached a high
yield of 96.0% in a one-pot and one-step reaction by oxidation with
atmospheric O2 (balloon), with facile recovery and good
reusability of the catalyst. Good yields were also obtained in the
direct synthesis of DFF from other carbohydrates including glucose,
sucrose, inulin, raffinose, maltose, and starch. The high performance
relied on the unique high-silica MOR skeleton, which (1) endowed the
highly dispersed V species mainly in the form of isolated tetrahedrally
coordinated [V2O8]6– species
as the active oxidative sites and (2) provided satisfactory acidity
for the formation of intermediate 5-hydroxymethylfurfural (HMF) and
sufficient resistance to corrosion under an acid environment for good
stability.
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