Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research interests include Materials science, Electrolyte, Lithium (medication), Anode, Nanotechnology, and Zinc.
Skin-like quasi-solid-state electrolytes for spontaneous zinc-ion dehydration toward ultra-stable zinc–iodine batteries
Covalent Organic Frameworks with Localized High Polarity via Defect Engineering for Interfacial Regulation of Aqueous Zinc Batteries
Visual Engineering Achieved with Electronegative Carbon Dots for Highly Efficient Ion Flux Regulation
Eco‐Friendly High‐Performance Symmetric All‐COF/Graphene Aqueous Zinc‐Ion Batteries
Scalable Customization of Crystallographic Plane Controllable Lithium Metal Anodes for Ultralong‐Lasting Lithium Metal Batteries
Covalent organic frameworks-based functional separators for rechargeable batteries: Design, mechanism, and applications
Lithium Sulfur Batteries: Insights from Solvation Chemistry to Feasibility Designing Strategies for Practical Applications
Highly lithiophilic and uniform Co-MOF-derived ultrathin Co3O4 nanoarrays enable dendrite-free lithium metal anode
Uncovering Synergistic Effects of Electrode/Electrolyte Toward Concerted Cathodic Structure Stabilization for Superior‐Performance Aqueous Zn‐δ‐MnO<sub>2</sub> Battery
Zincophilic host with lattice plane matching enables stable zinc anodes in aqueous zinc-ion batteries
Boron‐Based High‐Performance Lithium Batteries: Recent Progress, Challenges, and Perspectives
Structural insights into solid electrolyte interphase (SEI) on lithium metal anode: From design strategies to the stability evaluation
Stable dendrite-free Zn anode with Janus MXene-Ag interfacial bifunctional protective layer for aqueous zinc-ion batteries
Recent progress on enhancing the Lithiophilicity of hosts for dendrite-free lithium metal batteries
A flexible polyelectrolyte-based gel polymer electrolyte for high-performance all-solid-state supercapacitor application