Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Electrolyte, Anode, Carbon fibers, Supercapacitor, and Lithium (medication).
Current collector interphase design for high-energy and stable anode-less sodium batteries
Entropy Engineering Activates Cu‐Fe Inertia Center From Prussian Blue Analogs With Micro‐Strains for Oxygen Electrocatalysis in Zn‐Air Batteries
Quantitative and mechanistic insights into proton dynamics for fast energy storage
Regulating interfacial chemistry of layered lithium-rich oxide by weakly solvating electrolyte
Self-derived dual-carbon-constrained CoSe nanocatalyst for accelerated polysulfide conversion in lithium–sulfur batteries
Mechanical Grinding Formation of Highly Reversible (002)‐Textured Zinc Metal Anodes
Weakly Solvating Cyclic Ether‐Based Deep Eutectic Electrolytes for Stable High‐Temperature Lithium Metal Batteries
Recent Progress on Designing Carbon Materials by Structural Tuning and Morphological Modulation as K+-Storage Anodes
Research progress in non-aqueous low-temperature electrolytes for sodium-based batteries
Localized Water Restriction in Ternary Eutectic Electrolytes for Ultra‐Low Temperature Hydrogen Batteries
Regulating the Water Molecular in the Solvation Structure for Stable Zinc Metal Batteries
Enhancing the Whole Migration Kinetics of Na<sup>+</sup> in the Anode Side for Advanced Ultralow Temperature Sodium‐Ion Hybrid Capacitor
Interphasial Pre‐lithiation and Reinforcement of Micro‐Si Anode through Fluorine‐free Electrolytes
Engineering CoMoO4 in reduced graphene oxide as superior cathode hosts for advanced room-temperature sodium-sulfur batteries
Constructing 1D/2D interwoven carbonous matrix to enable high-efficiency sulfur immobilization in Li-S battery
Improved Low‐Temperature Performance of Rocking‐Chair Sodium‐Ion Hybrid Capacitor by Mitigating the De‐Solvation Energy and Interphase Resistance
Flower‐Like Interlayer‐Expanded MoS<sub>2−</sub><i><sub>x</sub></i> Nanosheets Confined in Hollow Carbon Spheres with High‐Efficiency Electrocatalysis Sites for Advanced Sodium–Sulfur Battery
Respective Roles of Inner and Outer Carbon in Boosting the K<sup>+</sup> Storage Performance of Dual‐Carbon‐Confined ZnSe
Rational Construction of Nitrogen‐Doped Hierarchical Dual‐Carbon for Advanced Potassium‐Ion Hybrid Capacitors
Tailor-Made Gives the Best Fits: Superior Na/K-Ion Storage Performance in Exclusively Confined Red Phosphorus System
Inside or Outside: Origin of Lithium Dendrite Formation of All Solid‐State Electrolytes
Fast and stable potassium-ion storage achieved by in situ molecular self-assembling N/O dual-doped carbon network
Nitrogen-doped hollow carbon nanospheres towards the application of potassium ion storage
Enhanced Ionic/Electronic Transport in Nano‐TiO<sub>2</sub>/Sheared CNT Composite Electrode for Na<sup>+</sup> Insertion‐based Hybrid Ion‐Capacitors