4.7 Article

Promotion of oxygen vacancies and metal-support interaction over 3DOM Au/CeO2 catalyst for CO oxidation

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APPLIED SURFACE SCIENCE
卷 629, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.apsusc.2023.157438

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CO oxidation; Three-dimensional ordered microporous; Oxygen vacancies; Metal-support interactions

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By using a three-dimensional ordered microporous material, Au/CeO2 catalyst was synthesized and showed complete CO oxidation at lower temperatures compared to traditional catalysts. This microporous catalyst also exhibited good stability and the promotion of metal distribution and oxygen vacancies by the fiber structure was discovered through various characterizations.
CO oxidation is the primary approach for eliminating CO from incomplete combustion, and the catalytic per-formance is dependent on the structure of catalysts. Herein, to explore the structure promotion in the CO oxidation reaction, polymethyl methacrylate was synthesized as the hard template to fabricate the three-dimensional ordered microporous (3DOM) Au/CeO2 and compared the catalytic performance with the Au/ CeO2 rod catalyst. The 3DOM Au/CeO2 catalyst could realize complete CO oxidation at 90 degrees C while 110 degrees C for Au/CeO2 rod catalyst. The 3DOM Au/CeO2 catalyst also showed outstanding stability for 60 h reaction. The achieved high performance could be attributed to the pore structures and the better metal-support interaction that facilitates abundant oxygen vacancies. Additionally, the Au distribution and oxygen vacancies promoted by the macropores structures were discovered using a series of characterizations. This work highlights the pro-motion of oxygen vacancies and metal-support interaction by 3DOM structure in CO oxidation reaction.

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