Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Anode, Materials science, Faraday efficiency, Carbon fibers, Electrolyte, and Amorphous solid.
Regulating closed pores structure of hard carbon anodes to boost plateau storage for advanced sodium-ion batteries
Causal associations between smoking and ocular diseases: a Mendelian randomization study
Sulfur-containing polydimethylsiloxane polymer enables stable lithium metal anodes for lithium sulfur batteries at room and low temperature
Self-powered triboelectric sensor based on micro-pyramid-conformal dome composite structures for texture recognition
Bulk Amorphous Carbon with Lightweight, High Strength, and Electrical Conductivity: Onion-Like Carbon Structures Embedded in Disordered Graphene Networks
Tailoring the dual precursors coupled hard carbon by embedding the pitch-derived graphitic domains to achieve high-performance sodium storage
Hollow Porous Co<sub>0.85</sub>Se/ZnSe@MXene Anode with Multilevel Built-in Electric Fields for High-Performance Sodium Ion Capacitors
Tailoring the microstructure and solid electrolyte interface of hard carbon to realize high-initial-coulombic-efficiency and high-rate sodium storage
Pre-engineering artificial solid electrolyte interphase for hard carbon anodes for superior sodium storage performance
Deep etching assisted hollow-carbon-skeleton structured porous Co0.85Se nanocubes anchored on MXene nanosheets for superior sodium storage toward ultrahigh initial Coulombic efficiency
SiOx microparticles embedded into 3D wrinkled N, S co-doped multilayer graphene sheets as a high-performance anode for long-life full lithium-ion batteries
Breaking the Speed Limits of Phase-Change Memory