Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research focused on Electrolyte and Dissolution, with related work in Aqueous solution, Graphene, Glovebox. Notable publications include 'Accelerating Ion Dynamics Under Cryogenic Conditions by the Amorphization of Crystalline Cathodes', 'Interfacial Microextraction Boosting Nitrogen Feed for Efficient Ambient Ammonia Synthesis in Aqueous Electrolyte', and 'New Type of Dynamically “Solid–Liquid” Interconvertible Electrolyte for High-Rate Zn Metal Battery'.
Interfacial Microextraction Boosting Nitrogen Feed for Efficient Ambient Ammonia Synthesis in Aqueous Electrolyte
New Type of Dynamically “Solid–Liquid” Interconvertible Electrolyte for High-Rate Zn Metal Battery
Suppressing Surface Lattice Oxygen Evolution by Fluorinated Graphene-Scaffolded Lithium-Rich Manganese-Based Cathode for Enhanced Stability
Eliminating Stubborn Insulated Deposition by Coordination Effect to Boost Zn Electrode Reversibility in Aqueous Electrolyte
Water-tolerant solid polymer electrolyte with high ion-conductivity for simplified battery manufacturing in air surroundings
Accelerating Ion Dynamics Under Cryogenic Conditions by the Amorphization of Crystalline Cathodes