Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research interests include Advanced Battery Materials and Technologies, Advancements in Battery Materials, Advanced Battery Technologies Research, and Advanced battery technologies research.
An all-natural wood-inspired cellulose nanofiber composite aerogel for superior thermal insulation and flame retardancy
Recyclable, robust, and antimicrobial bamboo cellulose nanofiber aerogel decorated with ZnO@PDA core-shell nanoparticles for efficient oil-water separation
Probing Multiscale Dynamics of Energy-Dense Batteries by Operando Imaging
Continuous Amorphous Metal–Organic Frameworks Layer Boosts the Performance of Metal Anodes
Visualization of battery materials and their interfaces/interphases using cryogenic electron microscopy
Electrostatic Induced Peptide Hydrogels for pH‐Controllable Doxorubicin Release and Antitumor Activity
A cost-effective and humidity-tolerant chloride solid electrolyte for lithium batteries
Dynamic interphase–mediated assembly for deep cycling metal batteries
Super-assembled atomic Ir catalysts on Te substrates with synergistic catalytic capability for Li-CO2 batteries
Strategies in catalysts and electrolyzer design for electrochemical CO<sub>2</sub>reduction toward C<sub>2+</sub>products
Approaching the theoretical capacity limit of Na2FeSiO4-based cathodes with fully reversible two-electron redox reaction for sodium-ion battery
Recent Progress of the Solid‐State Electrolytes for High‐Energy Metal‐Based Batteries
Stable Lithium Electrodeposition at Ultra‐High Current Densities Enabled by 3D PMF/Li Composite Anode
Regulating Li deposition at artificial solid electrolyte interphases
Design Principles of Functional Polymer Separators for High‐Energy, Metal‐Based Batteries
A stable room-temperature sodium–sulfur battery
Stable Cycling of Lithium Metal Batteries Using High Transference Number Electrolytes
Stable lithium electrodeposition in liquid and nanoporous solid electrolytes
A rechargeable Na–CO<sub>2</sub>/O<sub>2</sub>battery enabled by stable nanoparticle hybrid electrolytes
Tethered Molecular Sorbents: Enabling Metal‐Sulfur Battery Cathodes
Nanoporous Polymer‐Ceramic Composite Electrolytes for Lithium Metal Batteries
Ionic Liquid‐Nanoparticle Hybrid Electrolytes and their Application in Secondary Lithium‐Metal Batteries