Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Photocatalysis, Catalysis, Heterojunction, Oxygen, and X-ray photoelectron spectroscopy.
Construction of CdS/ZnIn2S4 heterojunction enriched in S vacancy with high photocatalytic performance for hydrogen evolution and degradation of MO
K-doping g-C3N4 with ZnIn2S4 to construct Z-scheme heterojunction for photocatalytic hydrogen production and dye degradation
Oxygen vacancy-rich Z-scheme g-C3N4/BiOBr heterojunction with enhanced visible-light photocatalytic activity for pollutants degradation
PtM (M = Fe, Co, Ni) alloys as highly efficient catalysts to the oxygen reduction reaction
Low-Loading Pt nanoparticles supported by Fe-N-C rich in FeNX sites with strong electronic interaction for high oxygen reduction performance
Visible-light-driven CdS/ZnS heterojunctions with excellent photocatalytic performance for organic dyes removal
Synergistic effects of interface and valence state on boosting electrochemical CO2 reduction activity of La2CuO4
Construction of the VOBiOBr/VSZnIn2S4 heterojunction for photocatalytic hydrogen production and dye removal under simulated sunlight
Facile synthesis of SnS2/Manganese sulfide composites with enhance photocatalytic activity
Oxygen vacancy induced interaction between Pt and TiO2 to improve the oxygen reduction performance
Synergistic effect of oxygen vacancies and doped sulfur over BiOBr for efficient visible photocatalytic removal of dyes
Ag nanoparticle-loaded to MnO2 with rich oxygen vacancies and Mn3+ for the synergistically enhanced oxygen reduction reaction
Theoretical exploration on the activity of copper single-atom catalysts for electrocatalytic reduction of CO<sub>2</sub>
Trace Cr(OH)3 modified α-MnO2 electrocatalyst intercalated by Ag+ with superior activity and stability for oxygen reduction reaction
Oxygen Vacancies-Rich S-Cheme BiOBr/CdS Heterojunction with Synergetic Effect for Highly Efficient Light Emitting Diode-Driven Pollutants Degradation
Construction of Pt/Powder Charcoal Electrocatalyst Utilizing MnO<sub>2</sub> as an Additive to Improve the Stability for Oxygen Reduction Reaction
Oxygen Vacancies-Rich S-Cheme Biobr/Cds Heterojunction with Synergetic Effect For Highly Efficient Light Emitting Diode-Driven Pollutants Degradation
Synergistic effect of Mn3+ and oxygen vacancy on the bifunctional oxygen electrocatalytic performance of MnOX/CNTs composites
Solid-State Synthesis of ZnO/ZnS Photocatalyst with Efficient Organic Pollutant Degradation Performance
Synergistic Effect Of Mn 3+ And Oxygen Vacancy On The Bifunctional Oxygen Electrocatalytic Performance of Mnox/Cnts Composites
One-pot synthesis of flower-like SnS2/SnO2 heterojunction with enhanced visible light photocatalytic performance
Facile synthesis of Ag/CdS composites with improved photocatalytic performance
Facile strategy for the fabrication of noble metal/ZnS composites with enhanced photocatalytic activities
Efficient treament of organic pollutants over CdS/graphene composites photocatalysts
Influences of synthetic conditions on the photocatalytic performance of ZnS/graphene composites
Effects of the synthesis conditions on the photocatalytic activities of sulfide-graphene oxide composites
Facile synthesis of CdS nanorods with enhanced photocatalytic activity
A general method for the synthesis of graphene oxide-metal sulfide composites with improved photocatalytic activities