Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Electrocatalysts for Energy Conversion, Fuel Cells and Related Materials, Advanced battery technologies research, and Electrochemical Analysis and Applications.
Unveiling the Catalytic Potential of Facet Heterojunctions in Platinum Alloys for Oxygen Reduction Reaction
Lattice-matched metal/WN catalyst with highly oxygenophilic W sites for hydrogen production in seawater electrolyzer
Discovery of Efficient Acidic Oxygen Evolution Electrocatalyst: High‐Throughput Computational Screening of MgIrRu Oxide
Pt<sub>1.8</sub>Pd<sub>0.2</sub>CuGa Intermetallic Nanocatalysts with Enhanced Methanol Oxidation Performance for Efficient Hybrid Seawater Electrolysis
In Situ Phase Transformation-Enabled Metal–Organic Frameworks for Efficient CO<sub>2</sub> Electroreduction to Multicarbon Products in Strong Acidic Media
Surface Facets Reconstruction in Copper‐Based Materials for Enhanced Electrochemical CO<sub>2</sub> Reduction
Rational Design of Ultrafine Pt Nanoparticles with Strong Metal‐Support Interaction for Efficient Hydrogen Evolution
Structure–performance relationship of Au nanoclusters in electrocatalysis: Metal core and ligand structure
In-situ construction of three-dimensional ordered cobalt-nitrogen- carbon nanotubes integrated self-supporting electrode for efficiently electrocatalyzing oxygen reduction reaction
Ligand Design in Atomically Precise Copper Nanoclusters and Their Application in Electrocatalytic Reactions
PtFe Nanoalloys Supported on Fe‐Based Cubic Framework as Efficient Oxygen Reduction Electrocatalysts for Proton Exchange Membrane Fuel Cells
Acidic conditions for efficient carbon dioxide electroreduction in flow and MEA cells
Enhanced TiO<sub>2</sub> Photocatalytic 2 e<sup>–</sup> Oxygen Reduction Reaction via Interfacial Microenvironment Regulation and Mechanism Analysis
The Elements Selection of High Entropy Alloy Guided by Thermodynamics and the Enhanced Electrocatalytic Mechanism for Oxygen Reduction Reaction
Electronic Enhancement Engineering by Atomic Fe–N<sub>4</sub> Sites for Highly‐Efficient PEMFCs: Tailored Electric‐Thermal Field on Pt Surface
Synergistic d-p hybridized Co/W5N4 heterostructure catalyst for industrial alkaline water/seawater hydrogen evolution
Quasi-<i>In Situ</i> XPS Insights into the Surface Chemistry of Garnet-Type Li<sub>6.4</sub>La<sub>3</sub>Zr<sub>1.4</sub>Ta<sub>0.6</sub>O<sub>12</sub> Solid-State Electrolytes: The Overlooked Impact of Pretreatments and a Direct Observation of the Formation of LiOH
Controllably partial removal of thiolate ligands from unsupported Au25 nanoclusters by rapid thermal treatments for electrochemical CO2 reduction
Recent Progress in High Entropy Alloys for Electrocatalysts
High‐Temperature Confinement Synthesis of Supported Pt–Ni Nanoparticles for Efficiently Catalyzing Oxygen Reduction Reaction
Constructing oxygen vacancy-regulated cobalt molybdate nanoflakes for efficient oxygen evolution reaction catalysis
Modulating the Electronic Structure of RuO<sub>2</sub> through Cr Solubilizing for Improved Oxygen Evolution Reaction
Recent Advances in the Understanding of the Surface Reconstruction of Oxygen Evolution Electrocatalysts and Materials Development
Novel fluorine-doped cobalt molybdate nanosheets with enriched oxygen-vacancies for improved oxygen evolution reaction activity
Engineering Electrochemical Surface for Efficient Carbon Dioxide Upgrade
Recent developments of nanocarbon based supports for PEMFCs electrocatalysts
Emerging materials for the electrochemical detection of COVID-19
New TiO<sub>2</sub>‐Based Oxide for Catalyzing Alkaline Hydrogen Evolution Reaction with Noble Metal‐Like Performance
High temperature proton exchange membrane fuel cells: progress in advanced materials and key technologies
Recent advances in electrochemical 2e oxygen reduction reaction for on-site hydrogen peroxide production and beyond