Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Electrochemistry, Anode, Electrolyte, Lithium (medication), and Cathode.
Tuning the Formation Kinetics of *OOH Intermediate with Hollow Bowl-Like Carbon by Pulsed Electroreduction for Enhanced H<sub>2</sub>O<sub>2</sub> Production
Aqueous Zinc‐Sulfur Batteries: From Challenges to Strategies
Towards High‐Performance Aqueous Zn‐Organic Batteries via Using I <sup>−</sup> ‐Based Active Electrolyte
Closed‐Loop Iodine‐Oxygen Electrochemistry for High‐Reversibility Neutral Zinc–Air Hybrid Batteries
Regulating particle size and facilitating K+ De-Solvation by Closed-Loop recycling electrospinning of metal hexacyanoferrates
Customizing oxygen electrocatalytic microenvironment with S, N codoped carbon nanofibers confining carbon nanocapsules and Co9S8 nanoparticles for rechargeable Zn-air batteries
Enhancing Efficiency and Durability of Alkaline Zn‐Co/Air Hybrid Batteries with Self‐Reconstructed Co/Co<sub>2</sub>P Heterojunctions
Facilitating reactant accessibility to heterometallic phosphide with superhydrophilic interfaces for efficient electrochemical production of ammonia and lactic acid
Energetic aqueous zinc-sulfur battery achieved via co-solvent and redox mediator synergistic regulation
Mystical alkali metal flame: Sodiophilic insights into rapid preparation of the Na metal battery anode
Tough and temperature-resistant mask-based separator realized by K-β”-Al2O3 protective layer for stabilizing NaK liquid metal batteries
Stabilizing Low-Spin Position by Iron–Manganese Coexistence in Hexacyanoferrate for Efficient Aqueous Nickel-Ion Storage
Ammonium Ion Batteries: Material, Electrochemistry and Strategy
Engineering Self‐Supported Hydrophobic–Aerophilic Air Cathode with CoS/Fe<sub>3</sub>S<sub>4</sub> Nanoparticles Embedded in S, N Co‐Doped Carbon Plate Arrays for Long‐Life Rechargeable Zn–Air Batteries
Phosphorus‐Mediated Local Charge Distribution of N‐Configuration Adsorption Sites with Enhanced Zincophilicity and Hydrophilicity for High‐Energy‐Density Zn‐Ion Hybrid Supercapacitors
Toward Sustainable Metal‐Iodine Batteries: Materials, Electrochemistry and Design Strategies
Recent progress in rechargeable calcium-ion batteries for high-efficiency energy storage
Tailoring short-chain sulfur molecules to drive redox dynamics for sulfur-based aqueous battery
Achieving High Energy Efficiency: Recent Advances in Zn‐Air‐Based Hybrid Battery Systems
A triple-synergistic small-molecule sulfur cathode promises energetic Cu-S electrochemistry
Dual synergistic effects assisting Cu-SeS <sub>2</sub> electrochemistry for energy storage
Ammonium Ion Batteries: Material, Electrochemistry and Strategy
Cu-substituted nickel hexacyanoferrate with tunable reaction potentials for superior ammonium ion storage
Toward Sustainable Metal‐Iodine Batteries: Materials, Electrochemistry and Design Strategies
Cobalt/Nitrogen Co‐Doped Carbon Materials Enhance the Reaction Rate of Sodium–Potassium Alloy Electrodes
Suitability of NaK alloy for the sodium or potassium metal batteries: Competition between cathode size effect and ion reaction priority effect
Effect of Solder Layer Void Damage on the Temperature of IGBT Modules
Reliability Analysis of Flip-Chip Packaging GaN Chip with Nano-Silver Solder BUMP
Highly efficient sulfur cathode built from biomass of hierarchical porous carbon for aqueous Cu–S batteries
Defect engineering of electrode materials towards superior reaction kinetics for high-performance supercapacitors