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dc.creatorTang, Tian
dc.creatorYe, Lyumeng
dc.creatorChen, Yanrong
dc.creatorXue, Jingyu
dc.creatorShen, Xiaoqiang
dc.creatorChen, Jinfei
dc.creatorQuarcoo, Fiona Hammond
dc.creatorRac, Vladislav
dc.creatorRakić, Vesna
dc.creatorLi, Xinbao
dc.creatorDu, Xuesen
dc.date.accessioned2023-11-03T12:08:01Z
dc.date.available2023-11-03T12:08:01Z
dc.date.issued2024
dc.identifier.issn0926-3373
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S0926337323010111
dc.identifier.urihttp://aspace.agrif.bg.ac.rs/handle/123456789/6464
dc.description.abstractThe unique interface synergistic catalytic properties for metal oxide-supported catalysts have long been explored in several critical heterogeneous catalytic processes (e.g., CO oxidation reactions). However, interfacial synergistic catalysis is still a hitherto undescribed mechanism due to the lack of direct evidence at the atomic level. Thereinto, the CuOx-supported CeO2 (CuOx/CeO2) catalyst is a typical case. Herein, a combination study including representative theoretical calculations, in situ DRIFTS spectra and tailored molecular probe experiments supports a new carbonate-interface mediated Mars-van Krevelen (M−vK) mechanism for CO oxidation, i.e., CO molecules form carbonate intermediate species directly between spatial proximity (2.99 Å) double lattice oxygen sites with low oxygen vacancies formation energy (EformOv = 0.82 eV/0.83 eV) at the copper−ceria interface. The reaction energy barrier of this process is 0.32 eV, much lower than the 1.23 eV of the conventional M−vK mechanism. Besides, the spatial effect of double oxygen vacancies (Ov) generated by the depletion of intermediate carbonate species promotes the sustained and dynamic activation of O2, hence facilitating the efficient operation of the M−vK mechanism at low temperatures.
dc.rightsrestrictedAccess
dc.sourceApplied Catalysis B: Environmental
dc.sourceApplied Catalysis B: EnvironmentalApplied Catalysis B: Environmental
dc.subjectCO oxidation
dc.subjectCopper−ceria interface
dc.subjectDFT+U
dc.subjectMars-van Krevelen (M−vK)
dc.titleDiving into the interface-mediated Mars-van Krevelen (M−vK) characteristic of CuOx-supported CeO2 catalysts
dc.typearticleen
dc.rights.licenseARR
dc.citation.rankaM21~
dc.citation.spage123368
dc.citation.volume342
dc.identifier.doi10.1016/j.apcatb.2023.123368
dc.type.versionpublishedVersion


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