Area of research
Materials Chemistry · Physical and Theoretical Chemistry
Research interest
Research interests include Catalysis, Materials science, Soot, Sintering, Combustion, and Nanowire.
Engineering low Pd content catalysts for soot combustion through tuning the Pd-SnO2 interface interaction: Disclosing the critical role of dual Pd valence states for the activity
Tuning SnO2 surface with CuO for soot particulate combustion: The effect of monolayer dispersion capacity on reaction performance
SnO2/Al2O3 catalysts for selective reduction of NOx by propylene: On the promotional effects of plasma treatment in air atmosphere
Confined Ultrathin Pd‐Ce Nanowires with Outstanding Moisture and SO<sub>2</sub> Tolerance in Methane Combustion
The influence on the structural and redox property of CuO by using different precursors and precipitants for catalytic soot combustion
In Situ Embedded Pseudo Pd–Sn Solid Solution in Micropores Silica with Remarkable Catalytic Performance for CO and Propane Oxidation
Double-shelled hollow LaNiO3 nanocage as nanoreactors with remarkable catalytic performance: Illustrating the special morphology and performance relationship
Confined Ultrathin Pd‐Ce Nanowires with Outstanding Moisture and SO<sub>2</sub> Tolerance in Methane Combustion
Three-dimensionally ordered macroporous SnO2-based solid solution catalysts for effective soot oxidation
Enhanced toluene combustion performance over Pt loaded hierarchical porous MOR zeolite
SnO2 promoted by alkali metal oxides for soot combustion: The effects of surface oxygen mobility and abundance on the activity
La-doped Pt/TiO2 as an efficient catalyst for room temperature oxidation of low concentration HCHO
One‐Pot Facile Fabrication of Multiple Nickel Nanoparticles Confined in Microporous Silica Giving a Multiple‐Cores@Shell Structure as a Highly Efficient Catalyst for Methane Dry Reforming