No. 24 South Section1, Yihuan Road,
Chengdu, 610064
China
Sichuan University
Doped mullite, NO oxidation, Low temperature activity, Hydrothermal stability, Oxygen vacancies
VOC emissions, toluene, Ag/CexZr1-xO2, metal-support interaction, Mechanism
Rh-based TWCs, Support pretreatment, Metal-support interaction, Oxygen vacancy, Promoting and binding
Pd-only three-way catalysts, CeO2-ZrO2, surface Ce-Ox species, oxygen vacancies
Three-way catalysts (TWCs), noble-metals (Pt, Pd and Rh), Metal-support interaction, ceria-zirconia support, κ-Ce2Zr2O8 structure
Doped mullite, NO oxidation, Low temperature activity, Hydrothermal stability, Oxygen vacancies, Oxygen migration
CeO2-ZrO2, κ-Ce2Zr2O8, metal-support interaction, three-way catalysis, palladium migration
SmMn2O5 mullite, dual-type oxygen vacancies, NO oxidation, adsorption activation capacity
Platinum, Ceria overlayers, Metal−oxide interface, CO oxidation, Three−way catalysts
oxygen vacancy, Pd chemical states, Three-way catalysis, C3H8 total combustion
Methane combustion, Palladium, Magnesium promoter, Structure transformation, Hydrothermal stability
diesel oxidation catalyst, redox cycles, atomic rearrangement, oxidation performance
κ-Ce2Zr2O8 content, crystal interface, three-way catalyst, redox property
Rare earth elements, electron interaction, electronegativity, NO oxidation
Palladium, Silicate, Ceria-zirconia, Methane combustion, Catalytic activity, Support properties
Doping strategy, CeO2-ZrO2-Al2O3, Pd-only TWCs, NO+C3H8 reaction
BiMn2O5/CeO2, Pt/BiMn2O5, NO oxidation, Defective interfaces, Low temperature performance, Hydrothermal stability
catalytic toluene oxidation, Mn-O band, lattice oxygen migration, Oxygen vacancies, reaction mechanism.
CeO2-ZrO2-Bi2O3 composite oxides, Soot oxidation, Pt micro-chemical state, Active oxygen species formation and migration, Oxygen vacancies
CeZr/Cu-SSZ-13, NH3-SCR, hydrothermal stability, NH4NO3 aggregation
NO Oxidation, perovskites, A-site dopant, Oxygen Vacancy, Cobalt ions
Enrooted structure, Pt2+-Ov-Ce3+, Metal-support interaction, Sintering inhibition, Three-way catalysts