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In the reaction of oxidizing 5-hydroxymethylfurfural (HMF), attaining high efficiency and selectivity in the conversion of HMF into DFF presents a challenge due to the possibility of forming multiple products. Polyoxometalates are considered highly active catalysts for HMF oxidation. However, the over-oxidation of products poses a challenge, leading to decreased purity and yield. In this work, metal-organic framework-derived FeO/C and CoO/C were designed as carriers for the vanadium-substituted Keggin-type polyoxomolybdate HPMoVO·35HO (PMoV). In this complex system, spinel oxides can effectively adsorb HMF molecules and cooperate with PMoV to catalyze the aerobic oxidation of HMF. As a result, the as-prepared PMoV@FeO/C and PMoV@CoO/C catalysts can achieve efficient conversion of HMF into DFF with almost 100% selectivity. Among them, PMoV@FeO/C exhibits a higher conversion rate (99.1%) under milder reaction conditions (oxygen pressure of 0.8 MPa). Both catalysts exhibited exceptional stability and retained their activity and selectivity even after undergoing multiple cycles. Studies on mechanisms by diffuse reflectance infrared Fourier transform spectroscopy and X-ray photoelectron spectroscopy revealed that the V and Mo in PMoV, together with the metal ions in the spinel oxides, act as active centers for the catalytic conversion of HMF. Therefore, it is proposed that PMoV and MO/C (M = Fe, Co) cooperatively catalyze the transformation of HMF into DFF a proton-coupled electron transfer mechanism. This study offers an innovative approach for designing highly selective and recyclable biomass oxidation catalysts.
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http://dx.doi.org/10.1039/d3dt02935b | DOI Listing |
Nanoscale
August 2025
Graduate School of Science and Technology, Department of Applied Chemistry and Biochemistry, Kumamoto University, Kumamoto 860-8555, Japan.
We report a stable and selective photocatalyst for solar-driven oxidation of 5-hydroxymethylfurfural (HMF) using TiO coated CsPbBr quantum dots (QDs). Controlled TiO encapsulation at 120 °C preserves the structural integrity of the QDs, enhances colloidal stability, and forms a type II heterojunction that facilitates charge separation. The optimized nanocomposite achieves high conversion to 2,5-diformylfuran (DFF) with 90% selectivity under visible light irradiation using TEMPO as a redox mediator.
View Article and Find Full Text PDFAdv Mater
August 2025
School of Chemical Engineering, The University of Adelaide, Adelaide, SA, 5005, Australia.
Highly -active/-selective photocatalytic biomass conversion is of great importance for achieving remarkable solar-to-chemical conversion. However, serious challenges, e.g.
View Article and Find Full Text PDFSmall Methods
July 2025
Institute of Circular Economy, College of Materials Science and Engineering, Beijing University of Technology, Beijing, 100124, P. R. China.
Green electrochemical synthesis of 2,5-furandicarboxylic acid (FDCA) from biomass is an essential alternative for the substitution of petroleum-based terephthalic acid. The rational design and application of high-performance electrocatalysts are the key to advance this technique. In this work, mesoporous carbon encapsulated ultrafine ScO nanoparticles are reported as a new, highly efficient and selective electrocatalyst that realizes the concurrent electrochemical oxidation of biomass-derived 5-hydroxymethylfurfural (HMF) to FDCA coupled with hydrogen evolution.
View Article and Find Full Text PDFAdv Mater
June 2025
College of Energy Materials and Chemistry, College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot, 010070, China.
Constructing advanced semiconductor nanoreactors is an effective route to boost the efficient photocatalytic conversion of biomasses to high-value-added products. Herein, single-atom anchored flower-like mesoporous TiO nanoreactors with tunable anatase-rutile crystalline phases are prepared via a micelle-interface confined co-assembly strategy (Ru/A&R-TNs). This approach not only facilitates the introduction of various monatomic/diatomic (e.
View Article and Find Full Text PDFACS Omega
June 2025
Department of Chemistry, Centre of Advanced Study, Institute of Science, Banaras Hindu University (BHU), Varanasi 221005, Uttar Pradesh, India.
Using glucose, one of the readily available biomasses provides an industrially relevant derivative 5-hydroxymethyl furfural (5-HMF) containing two versatile functionalities. 2,5-Furandicarbaldehyde (DFF) has been synthesized in high yields via chemo-selective oxidation of 5-HMF. Biobased thermoset vitrimers were prepared by the condensation of DFF with various amines such as polyethylenimine, Bis-[4-(4-aminophenoxy)-phenyl] propane (BAPP), 1,4-diaminobutane, and (l)-Lysine.
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