Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Cathode and Anode, with related work in Energy storage, Heterojunction, Mesoporous material. Notable publications include 'Porous One‐Dimensional Nanomaterials: Design, Fabrication and Applications in Electrochemical Energy Storage', 'Vanadium Oxide Pillared by Interlayer Mg2+ Ions and Water as Ultralong-Life Cathodes for Magnesium-Ion Batteries', and 'Novel layered iron vanadate cathode for high-capacity aqueous rechargeable zinc batteries'.
Semi‐Chelation Solvation Enables High Interface Compatibilities with both Anode and Cathode in a Bulky Mg[B(HFIP) <sub>4</sub> ] <sub>2</sub> Electrolyte
Advanced cathode for synergistic anion-cation redox reactions in magnesium-ion batteries — A pathway to fast diffusion/reaction kinetics
Interfacial Engineering of Metal Chalcogenides‐based Heterostructures for Advanced Sodium‐Ion Batteries
Vanadium Oxide Pillared by Interlayer Mg2+ Ions and Water as Ultralong-Life Cathodes for Magnesium-Ion Batteries
Two-Dimensional Mesoporous Heterostructure Delivering Superior Pseudocapacitive Sodium Storage via Bottom-Up Monomicelle Assembly
Surface Pseudocapacitive Mechanism of Molybdenum Phosphide for High‐Energy and High‐Power Sodium‐Ion Capacitors
Novel layered iron vanadate cathode for high-capacity aqueous rechargeable zinc batteries
Multidimensional Synergistic Nanoarchitecture Exhibiting Highly Stable and Ultrafast Sodium‐Ion Storage
Sodium Ion Capacitor Using Pseudocapacitive Layered Ferric Vanadate Nanosheets Cathode
Porous One‐Dimensional Nanomaterials: Design, Fabrication and Applications in Electrochemical Energy Storage
Pseudocapacitive titanium oxynitride mesoporous nanowires with iso-oriented nanocrystals for ultrahigh-rate sodium ion hybrid capacitors