Area of research
Renewable Energy, Sustainability and the Environment · Water Science and Technology
Research interest
Research interests include Advanced Photocatalysis Techniques, Catalytic Processes in Materials Science, Advanced oxidation water treatment, and Electrocatalysts for Energy Conversion.
Precisely constructing orbital coupling-modulated iron dinuclear site for enhanced catalytic ozonation performance
Refining Asymmetric Low‐Coordinated Fe‐N<sub>3</sub> Motif to Boost Catalytic Ozonation Activity
Engineering of Graphitic Carbon Nitride (g‐C <sub>3</sub> N <sub>4</sub> ) Based Photocatalysts for Atmospheric Protection: Modification Strategies, Recent Progress, and Application Challenges
Optimization of Carbon‐Defect Engineering to Boost Catalytic Ozonation Efficiency of Single Fe─N<sub>4</sub> Coordination Motif
Cation Substitution Induced d‐Band Center Modulation on Cobalt‐Based Spinel Oxides for Catalytic Ozonation
Accelerated Catalytic Ozonation in a Mesoporous Carbon-Supported Atomic Fe–N<sub>4</sub> Sites Nanoreactor: Confinement Effect and Resistance to Poisoning
Progress in metal-organic-framework-based single-atom catalysts for environmental remediation
Electron Transfer Trade-offs in MOF-Derived Cobalt-Embedded Nitrogen-Doped Carbon Nanotubes Boost Catalytic Ozonation for Gaseous Sulfur-Containing VOC Elimination
Self-Accelerating Interfacial Catalytic Elimination of Gaseous Sulfur-Containing Volatile Organic Compounds as Microbubbles in a Facet-Engineered Three-Dimensional BiOCl Sponge Fenton-Like Process
Overlooked self-catalytic mechanism in phenolic moiety-mediated Fenton-like system: Formation of Fe(III) hydroperoxide complex and co-treatment of refractory pollutants
Enhanced Fenton-like catalysis for pollutants removal via MOF-derived CoxFe3−xO4 membrane: Oxygen vacancy-mediated mechanism
Multifunctional Au/Ti<sub>3</sub>C<sub>2</sub> Photothermal Membrane with Antibacterial Ability for Stable and Efficient Solar Water Purification under the Full Spectrum
Electron-rich/poor reaction sites enable ultrafast confining Fenton-like processes in facet-engineered BiOI membranes for water purification