Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Oxygen evolution, Bifunctional, Electrolysis, Catalysis, Nanosheet, and Hydrazine (antidepressant).
Manipulation of Electron Spins with Oxygen Vacancy on Amorphous/Crystalline Composite-Type Catalyst
Spin regulation on (Co,Ni)Se2/C@FeOOH hollow nanocage accelerates water oxidation
Atomic Metal–Support Interaction Enables Reconstruction-Free Dual-Site Electrocatalyst
Advanced Catalysts for Photoelectrochemical Water Splitting
Mono-coordinated metallocene ligands endow metal-organic frameworks with highly efficient oxygen evolution and urea electrolysis
Anodic Hydrazine Oxidation Assists Energy‐Efficient Hydrogen Evolution over a Bifunctional Cobalt Perselenide Nanosheet Electrode
Anodic Hydrazine Oxidation Assists Energy‐Efficient Hydrogen Evolution over a Bifunctional Cobalt Perselenide Nanosheet Electrode