Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Catalysis, Platinum, Inorganic chemistry, Electrolyte, and Dissolution.
Single Cobalt Sites Dispersed in Hierarchically Porous Nanofiber Networks for Durable and High‐Power PGM‐Free Cathodes in Fuel Cells
Eliminating dissolution of platinum-based electrocatalysts at the atomic scale
Thermally Driven Structure and Performance Evolution of Atomically Dispersed FeN<sub>4</sub> Sites for Oxygen Reduction
Atomically dispersed manganese catalysts for oxygen reduction in proton-exchange membrane fuel cells
Highly active atomically dispersed CoN<sub>4</sub> fuel cell cathode catalysts derived from surfactant-assisted MOFs: carbon-shell confinement strategy
Unveiling Active Sites of CO<sub>2</sub> Reduction on Nitrogen-Coordinated and Atomically Dispersed Iron and Cobalt Catalysts
Metal-organic framework-derived nitrogen-doped highly disordered carbon for electrochemical ammonia synthesis using N2 and H2O in alkaline electrolytes
Shock-induced amorphization in silicon carbide
Mechanism of Zn Insertion into Nanostructured δ-MnO<sub>2</sub>: A Nonaqueous Rechargeable Zn Metal Battery
Generating gradient germanium nanostructures by shock-induced amorphization and crystallization
Interfacial Stability of Li Metal–Solid Electrolyte Elucidated via in Situ Electron Microscopy
Surface faceting and elemental diffusion behaviour at atomic scale for alloy nanoparticles during in situ annealing
Advanced analytical electron microscopy for lithium-ion batteries
Pressure and shear-induced amorphization of silicon
Highly Crystalline Multimetallic Nanoframes with Three-Dimensional Electrocatalytic Surfaces