Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Catalysis, Electrocatalyst, Oxygen evolution, Electrochemistry, and Oxygen.
Modulation of Interfacial Water at Gas–Liquid–Solid Interface for Water Electrolysis
Symmetry breaking of single-atom catalysts in heterogeneous electrocatalysis: reactivity and configuration
Industrially viable formate production with 50% lower CO<sub>2</sub> emissions
Modulation of Interfacial Water at Gas–Liquid–Solid Interface for Water Electrolysis
Magnetic field mediated oxygen radical mechanism for enhanced water oxidation
Spin-related Cu-Co pair to increase electrochemical ammonia generation on high-entropy oxides
Spin-dependent electrocatalysis
Best practices for oxygen electrocatalysis
Magnetic Field‐induced Disordered Phase of Spinel Oxides for High Battery Performance
Catalytically altering the redox pathway of sulfur in propylene carbonate electrolyte using dual-nitrogen/oxygen-containing carbon
In Situ X‐ray Absorption Spectroscopy of Metal/Nitrogen‐doped Carbons in Oxygen Electrocatalysis
Essential role of lattice oxygen in methanol electrochemical refinery toward formate
Harnessing magnetic fields to accelerate oxygen evolution reaction
In Situ X‐ray Absorption Spectroscopy of Metal/Nitrogen‐doped Carbons in Oxygen Electrocatalysis
Nitrogen‐Rich Carbonaceous Materials for Advanced Oxygen Electrocatalysis: Synthesis, Characterization, and Activity of Nitrogen Sites
Methanol electro-oxidation to formate on iron-substituted lanthanum cobaltite perovskite oxides
Enhanced oxygen evolution over dual corner-shared cobalt tetrahedra
Tuning of lattice oxygen reactivity and scaling relation to construct better oxygen evolution electrocatalyst
Spin pinning effect to reconstructed oxyhydroxide layer on ferromagnetic oxides for enhanced water oxidation
Raw biomass electroreforming coupled to green hydrogen generation
The importance of the dissolution of polysulfides in lithium-sulfur batteries and a perspective on high-energy electrolyte/cathode design
Covalency competition dominates the water oxidation structure–activity relationship on spinel oxides
Strategies for design of electrocatalysts for hydrogen evolution under alkaline conditions
Antiferromagnetic Inverse Spinel Oxide LiCoVO<sub>4</sub> with Spin‐Polarized Channels for Water Oxidation
Enhanced Thermal Buffering of Phase Change Materials by the Intramicrocapsule Sub per Mille CNT Dopant
Electrodeposited Sulfur and CoxS Electrocatalyst on Buckypaper as High-Performance Cathode for Li–S Batteries
Hydrogen peroxide sol–gel coating of microencapsulated phase change materials by metal oxides
Recommended Practices and Benchmark Activity for Hydrogen and Oxygen Electrocatalysis in Water Splitting and Fuel Cells
Approaches for measuring the surface areas of metal oxide electrocatalysts for determining their intrinsic electrocatalytic activity
Switch of the Rate-Determining Step of Water Oxidation by Spin-Selected Electron Transfer in Spinel Oxides