Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Materials science, Catalysis, Seawater, Doping, Chemistry, and Hydrogen production.
NiMo-based alloy and its sulfides for energy-saving hydrogen production via sulfion oxidation assisted alkaline seawater splitting
Tunable NiSe‐Ni<sub>3</sub>Se<sub>2</sub> Heterojunction for Energy‐Efficient Hydrogen Production by Coupling Urea Degradation
Single-atom catalysts toward electrocatalytic urea synthesis <i>via</i> C–N coupling reactions
Electronic Optimization in V-Doped NiS Nanoarrays Enables High-Efficiency Sulfide Oxidation-Assisted Seawater Electrolysis
Cu doping enhances electroreduction of nitrate to ammonia over NbS <sub>2</sub> hierarchical nanosheets
Phosphorus–tungsten dual-doping boosts acidic overall seawater splitting performance over RuO<sub><i>x</i></sub> nanocrystals
Enhanced Electrocatalytic Urea Synthesis over Iron-Doped InOOH Nanosheets under Ambient Conditions
Ultralow-Content (Bi<sub>0.5</sub>Na<sub>0.5</sub>) TiO<sub>3</sub>–NaNbO<sub>3</sub>/PVDF-HFP Nanocomposites for Ultrahigh-Energy-Density Capacitor Applications
Nanoscale subparticle imaging of vibrational dynamics using dark-field ultrafast transmission electron microscopy
Self‐Powered Controllable Transdermal Drug Delivery System
In Situ Transmission Electron Microscopy Investigation of Melting/Evaporation Kinetics in Anisotropic Gold Nanoparticles
Structure and orientation effects in the coalescence of Au clusters
In Situ Observations of Shell Growth and Oxidative Etching Behaviors of Pd Nanoparticles in Solutions by Liquid Cell Transmission Electron Microscopy
Inverse Spinel Cobalt–Iron Oxide and N-Doped Graphene Composite as an Efficient and Durable Bifuctional Catalyst for Li–O<sub>2</sub> Batteries