Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Cathode, Prussian blue, Electrochemistry, Ion, and Anode.
Synergistic niobium and manganese co-doping into RuO2 nanocrystal enables PEM water splitting under high current
Hydroxylation Strategy Enables Ru–Mn Oxide for Stable Proton Exchange Membrane Water Electrolysis under 1 A cm<sup>–2</sup>
Zero‐Waste Polyanion and Prussian Blue Composites toward Practical Sodium‐Ion Batteries
Structural Modulation of Cu‐Mn‐Fe Prussian Blue Analogs for Practical Sodium Ion Cylinder Cells
Insight Into Pre‐Intercalation of Layered Vanadium Oxide Cathodes: From Precise Control of the Interspace to Related Electrochemical Performance and Beyond
Molecular Wedge Reconstructing the Solvation Structure for Low-Temperature Ah-Level Anode-Free Sodium Metal Batteries
Elucidating Highly Activated Transition Metal Redox Chemistry in Low‐Nickel O3‐Type Layered Oxide Cathodes for Sodium‐Ion Batteries
Elucidating Highly Activated Transition Metal Redox Chemistry in Low‐Nickel O3‐Type Layered Oxide Cathodes for Sodium‐Ion Batteries
A 30‐year overview of sodium‐ion batteries
Accelerated Proton Transfer in Asymmetric Active Units for Sustainable Acidic Oxygen Evolution Reaction
<scp>High‐Safety</scp> Anode Materials for Advanced <scp>Lithium‐Ion</scp> Batteries
Fe-N co-doped carbon nanofibers with Fe3C decoration for water activation induced oxygen reduction reaction
Insights on advanced g‐C<sub>3</sub>N<sub>4</sub> in energy storage: Applications, challenges, and future
Scalable Precise Nanofilm Coating and Gradient Al Doping Enable Stable Battery Cycling of LiCoO<sub>2</sub> at 4.7 V
Structural Engineering of Prussian Blue Analogues Enabling All-Climate and Ultralong Cycling Sodium-Ion Batteries
Efficient Polytelluride Anchoring for Ultralong-Life Potassium Storage: Combined Physical Barrier and Chemisorption in Nanogrid-in-Nanofiber
Te-vacancy-rich CoTe2− anodes for efficient potassium-ion storage
Effect of Intrinsic Ferroelectric Phase Transition on Hydrogen Evolution Electrocatalysis
Regulation of Interface Ion Transport by Electron Ionic Conductor Construction toward High‐Voltage and High‐Rate LiNi<sub>0.5</sub>Co<sub>0.2</sub>Mn<sub>0.3</sub>O<sub>2</sub> Cathodes in Lithium Ion Battery
Advancing Metallic Lithium Anodes: A Review of Interface Design, Electrolyte Innovation, and Performance Enhancement Strategies
Achieving High OER Performance by Tuning the Co/Mn Content in Prussian Blue Analogues
Design of grid-like triple-carbon matrix confined ultrafine CoTe<sub>2</sub> nanocrystals toward durable and fast potassium storage
Advanced characterization techniques for phosphate cathodes in aqueous rechargeable zinc‐based batteries
Hierarchical porous carbon materials for lithium storage: preparation, modification, and applications
Scalable Precise Nanofilm Coating and Gradient Al Doping Enable Stable Battery Cycling of LiCoO<sub>2</sub> at 4.7 V
Design principles for air stabilized layered oxide battery cathodes
Effect of Intrinsic Ferroelectric Phase Transition on Hydrogen Evolution Electrocatalysis
Long‐Cycle‐Life Cathode Materials for Sodium‐Ion Batteries toward Large‐Scale Energy Storage Systems
Valence Oscillation of Ru Active Sites for Efficient and Robust Acidic Water Oxidation
Achieving All‐Plateau and High‐Capacity Sodium Insertion in Topological Graphitized Carbon