Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Advanced Photocatalysis Techniques, TiO2 Photocatalysis and Solar Cells, Copper-based nanomaterials and applications, and Electrocatalysts for Energy Conversion.
Superior CO
<sub>2</sub>
Conversion Performance by Er‐Doped BiOCl Nanosheets Through Synergistic Photocatalytic Memory Effect and Er‐Doping
Plasma-synthesized Ru-B double oxides catalysts for enhanced fuel cell performance
Creation of a composite photocatalytic nanofiber film of polyacrylonitrile encapsulated Cu2O nanoparticles for effective personal protective equipment application
Enhanced piezoelectric output performance in flexible polyvinylidene fluoride foam with a hierarchical dual-pore structure
Mild‐Condition Photocatalytic Reforming of Methanol‐Water by a Hierarchical, Asymmetry Carbon Nitride
Long-lasting, fast-switchable photochromism in Na0.5Bi0.5TiO3 induced by photocatalytic memory effect, and its subsequently enhanced piezoelectric response and catalytic performances
Optimized scheduling study of integrated energy system considering user response characteristics
Shear Stress Triggers Ultrathin-Nanosheet Carbon Nitride Assembly for Photocatalytic H<sub>2</sub>O<sub>2</sub> Production Coupled with Selective Alcohol Oxidation
Creation of robust oxygen vacancies in 2D ultrathin BiOBr nanosheets by irradiation through photocatalytic memory effect for enhanced CO2 reduction
P‐N Heterojunction Embedded CuS/TiO<sub>2</sub> Bifunctional Photocatalyst for Synchronous Hydrogen Production and Benzylamine Conversion
Incorporation of ultrathin porous metal-free graphite carbon nitride nanosheets in polyvinyl chloride for efficient photodegradation
Symmetrical distribution of P sites on thorn assembled Graphite carbon nitride microtube for photocatalytic conversion of CO2
Novel halogen-free deep eutectic solvents for efficient extraction of phenolic compounds from real coal tar
Direct-writing of three-dimensional porous Fe3N/FeS electrode for efficient degradation of organic pollutants in water through Electro-Fenton process
A Unique Fe–N<sub>4</sub> Coordination System Enabling Transformation of Oxygen into Superoxide for Photocatalytic CH Activation with High Efficiency and Selectivity
A promoted photocatalysis system trade-off between thermodynamic and kinetic via hierarchical distribution dual-defects for efficient H2 evolution
Insight into the composition effect of nickel cobalt layered double hydroxide nanoarrays with the enhanced synergistic effect for supercapacitor electrode
Boosted charge separation in direct Z-scheme heterojunctions of CsPbBr<sub>3</sub>/Ultrathin carbon nitride for improved photocatalytic CO<sub>2</sub>reduction
Enhancing the heterojunction component-interaction by in-situ hydrothermal growth toward photocatalytic hydrogen evolution
Fully conversing and highly selective oxidation of benzene to phenol based on MOFs-derived CuO@CN photocatalyst
Ultra-efficient post-treatment flame method to introduce abundant oxygen vacancies in BiVO4 photoanode toward solar water splitting
Sub-20-nm anatase TiO2 anchored on hollow carbon spheres for enhanced photocatalytic degradation of reactive red 195
Porous Carbon Nitride Thin Strip: Precise Carbon Doping Regulating Delocalized π‐Electron Induces Elevated Photocatalytic Hydrogen Evolution
Construction of CdSe polymorphic junctions with coherent interface for enhanced photoelectrocatalytic hydrogen generation
Nitrogen vacancy-rich porous carbon nitride nanosheets for efficient photocatalytic H2O2 production
CoNi2S4 nanoparticle on carbon cloth with high mass loading as multifunctional electrode for hybrid supercapacitor and overall water splitting
Metal-organic frameworks loaded on phosphorus-doped tubular carbon nitride for enhanced photocatalytic hydrogen production and amine oxidation
Constructing Pd-N interactions in Pd/g-C3N4 to improve the charge dynamics for efficient photocatalytic hydrogen evolution
Hollow carbon nanospheres@graphitic C3N5 heterostructures for enhanced oxygen electroreduction
Engineering of Single Atomic Cu-N<sub>3</sub> Active Sites for Efficient Singlet Oxygen Production in Photocatalysis