Area of research
Renewable Energy, Sustainability and the Environment · Biomedical Engineering
Research interest
Research interests include Materials science, Microstructure, Manganese, Metallurgy, and Aluminium.
Design principles of non-noble metal catalysts for high-performance rechargeable Zn-air batteries
Strengthening oxygen reduction activity based on the cooperation of pyridinic-N and graphitic-N for atomically dispersed Fe sites
Microstructure and Mechanical Properties of Medium Manganese Steel with Different Aluminum Addition After Very Short Time Intercritical Annealing
Reconstruction of Highly Dense Cu−N<sub>4</sub>Active Sites in Electrocatalytic Oxygen Reduction Characterized by Operando Synchrotron Radiation
Recent advances of biomass derived carbon-based materials for efficient electrochemical energy devices
Iron Single Atoms‐Assisted Cobalt Nitride Nanoparticles to Strengthen the Cycle Life of Rechargeable Zn–Air Battery
Copper Collector Generated Cu<sup>+</sup>/Cu<sup>2+</sup> Redox Pair for Enhanced Efficiency and Lifetime of Zn–Ni/Air Hybrid Battery
Structural Design Strategy and Active Site Regulation of High‐Efficient Bifunctional Oxygen Reaction Electrocatalysts for Zn–Air Battery
The cooperation of Fe<sub>3</sub>C nanoparticles with isolated single iron atoms to boost the oxygen reduction reaction for Zn–air batteries
Fe3C coupled with Fe-Nx supported on N-doped carbon as oxygen reduction catalyst for assembling Zn-air battery to drive water splitting
B,N-Doped Defective Carbon Entangled Fe<sub>3</sub>C Nanoparticles as the Superior Oxygen Reduction Electrocatalyst for Zn–Air Batteries
Cubic imidazolate frameworks-derived CoFe alloy nanoparticles-embedded N-doped graphitic carbon for discharging reaction of Zn-air battery