Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research focused on Catalysis and Electrocatalyst, with related work in Proton exchange membrane fuel cell, Oxygen, Oxygen evolution. Notable publications include 'Atomically dispersed manganese catalysts for oxygen reduction in proton-exchange membrane fuel cells', 'Cations in Octahedral Sites: A Descriptor for Oxygen Electrocatalysis on Transition‐Metal Spinels', and 'Active sites of copper-complex catalytic materials for electrochemical carbon dioxide reduction'.
Tuning the thermal activation atmosphere breaks the activity–stability trade-off of Fe–N–C oxygen reduction fuel cell catalysts
Effect of Phosphorus Modulation in Iron Single‐Atom Catalysts for Peroxidase Mimicking
NiFe Nanoparticle Nest Supported on Graphene as Electrocatalyst for Highly Efficient Oxygen Evolution Reaction
Atomically dispersed iron sites with a nitrogen–carbon coating as highly active and durable oxygen reduction catalysts for fuel cells
Atomically dispersed single Ni site catalysts for high-efficiency CO<sub>2</sub> electroreduction at industrial-level current densities
Atomically Dispersed Dual‐Metal Site Catalysts for Enhanced CO<sub>2</sub> Reduction: Mechanistic Insight into Active Site Structures
Single‐Atomic Iron Doped Carbon Dots with Both Photoluminescence and Oxidase‐Like Activity
Enhanced oxygen evolution over dual corner-shared cobalt tetrahedra
Atomically Dispersed Dual‐Metal Site Catalysts for Enhanced CO<sub>2</sub> Reduction: Mechanistic Insight into Active Site Structures
Amorphization mechanism of SrIrO <sub>3</sub> electrocatalyst: How oxygen redox initiates ionic diffusion and structural reorganization
Molecular engineering of dispersed nickel phthalocyanines on carbon nanotubes for selective CO2 reduction
Single Cobalt Sites Dispersed in Hierarchically Porous Nanofiber Networks for Durable and High‐Power PGM‐Free Cathodes in Fuel Cells
Single-Atom Nanozymes Linked Immunosorbent Assay for Sensitive Detection of A <i>β</i> 1-40: A Biomarker of Alzheimer’s Disease
Boosting oxygen evolution of single-atomic ruthenium through electronic coupling with cobalt-iron layered double hydroxides
Structural defects on converted bismuth oxide nanotubes enable highly active electrocatalysis of carbon dioxide reduction
Thermally Driven Structure and Performance Evolution of Atomically Dispersed FeN<sub>4</sub> Sites for Oxygen Reduction
3D porous graphitic nanocarbon for enhancing the performance and durability of Pt catalysts: a balance between graphitization and hierarchical porosity
Tuning perovskite oxides by strain: Electronic structure, properties, and functions in (electro)catalysis and ferroelectricity
Redox Targeting-Based Vanadium Redox-Flow Battery
Influence of Fe Substitution into LaCoO<sub>3</sub> Electrocatalysts on Oxygen-Reduction Activity
Atomically dispersed manganese catalysts for oxygen reduction in proton-exchange membrane fuel cells
Active sites of copper-complex catalytic materials for electrochemical carbon dioxide reduction
Unveiling Active Sites of CO<sub>2</sub> Reduction on Nitrogen-Coordinated and Atomically Dispersed Iron and Cobalt Catalysts
S-Doped MoP Nanoporous Layer Toward High-Efficiency Hydrogen Evolution in pH-Universal Electrolyte
Understanding Fundamentals and Reaction Mechanisms of Electrode Materials for Na‐Ion Batteries
Surface Orientation Dependent Water Dissociation on Rutile Ruthenium Dioxide
Cations in Octahedral Sites: A Descriptor for Oxygen Electrocatalysis on Transition‐Metal Spinels
Towards identifying the active sites on RuO<sub>2</sub>(110) in catalyzing oxygen evolution
Valence Change Ability and Geometrical Occupation of Substitution Cations Determine the Pseudocapacitance of Spinel Ferrite XFe<sub>2</sub>O<sub>4</sub> (X = Mn, Co, Ni, Fe)
Catalytic Activity and Stability of Oxides: The Role of Near-Surface Atomic Structures and Compositions