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◆ Nanoscale2026-09-08

Zn vacancy-engineered Au-based catalysts for the selective oxidation of glycerol to 1,3-dihydroxyacetone.

Xiaoqing Shi, Lei Wang, Zhaowei Tian, Si Wang, Xiaolong Yan, Xun Zhao, Xuan Liu, Renpu Liu, Guirong Wang, Yusen Yang

原始摘要(英文原文)· Original abstract
The efficient catalytic oxidation of biomass to produce high-value chemicals has become a major focus of current research. In this work, we report an Au/ZnvAl-MMO catalyst rich in zinc vacancies, which exhibits excellent catalytic performance in the selective oxidation of glycerol (conversion of ∼97.8% and a DHA yield of ∼80.4%). Experimental studies [X-ray photoelectron spectroscopy (XPS), X-ray absorption fine structure (XAFS), and in situ CO diffuse reflectance infrared Fourier transform spectroscopy (CO-DRIFTS)] indicate that the introduction of Zn defects leads to electron enrichment on O atoms adjacent to Zn vacancies, which promotes the reduction of Au and simultaneously forms unique Auδ+-O-Znv interfacial sites. Kinetic experiments further demonstrate that catalysts with a higher Au0 content exhibit a stronger ability to activate O2, resulting in significantly enhanced glycerol conversion. Combined in situ Fourier-transform infrared (FT-IR) spectroscopy and density functional theory (DFT) calculations reveal that the secondary O-H bond of glycerol preferentially adsorbs and activates at the Zn sites of the Auδ+-O-Znv interfacial structure. Meanwhile, the interfacial Auδ+ species facilitate the storage and migration of OH- and OOH- species. In addition, the electron-rich interfacial oxygen atoms establish stronger hydrogen-bonding interactions with the secondary O-H and β-H groups, thereby synergistically promoting the cleavage of both the secondary O-H and β-H bonds. This work not only offers important insights into the oxidation pathways of polyols, but also provides a simple and effective strategy for the efficient catalytic oxidation of biomass to produce high-value chemicals.
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Zn vacancy-engineered Au-based catalysts for the selective oxidation of glycerol to 1,3-dihydroxyacetone. — 科研速览 Science Skim