Area of research
Materials Chemistry · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Catalysis and Heterojunction, with related work in Water-gas shift reaction, Photocatalysis, Copper. Notable publications include 'Crystal Plane Effect of Ceria on Supported Copper Oxide Cluster Catalyst for CO Oxidation: Importance of Metal–Support Interaction', 'Enhanced Visible-Light Photocatalytic Activity of BiOI/BiOCl Heterojunctions: Key Role of Crystal Facet Combination', and 'Highly Dispersed Copper Oxide Clusters as Active Species in Copper-Ceria Catalyst for Preferential Oxidation of Carbon Monoxide'.
Boosting reactivity of water-gas shift reaction by synergistic function over CeO2-x/CoO1-x/Co dual interfacial structures
Construction of stabilized bulk-nano interfaces for highly promoted inverse CeO2/Cu catalyst
Crystal Plane Effect of Ceria on Supported Copper Oxide Cluster Catalyst for CO Oxidation: Importance of Metal–Support Interaction
Promoted Cu-Fe3O4 catalysts for low-temperature water gas shift reaction: Optimization of Cu content
Enhanced Visible-Light Photocatalytic Activity of BiOI/BiOCl Heterojunctions: Key Role of Crystal Facet Combination
Highly Dispersed Copper Oxide Clusters as Active Species in Copper-Ceria Catalyst for Preferential Oxidation of Carbon Monoxide
Exploring the effects of nanocrystal facet orientations in g-C<sub>3</sub>N<sub>4</sub>/BiOCl heterostructures on photocatalytic performance
Transition metal nanoparticles dispersed in an alumina matrix as active and stable catalysts for CO<sub>x</sub>-free hydrogen production from ammonia
Enhanced visible-light photocatalytic activity of g-C3N4/Zn2GeO4 heterojunctions with effective interfaces based on band match