Area of research
Aerospace Engineering · Mechanics of Materials
Research interest
Research interests include Anode, Materials science, Faraday efficiency, Electrolyte, Chemical engineering, and Aqueous solution.
Regulation of the solvation structure and electrode interface using a succinic acid additive for highly stable aqueous Zn batteries
Amorphous phosphatized hybrid interfacial layer for dendrite-free sodium deposition
Nonionic Surfactant-Assisted <i>In Situ</i> Generation of Stable Passivation Protective Layer for Highly Stable Aqueous Zn Metal Anodes
Double interface regulation: Toward highly stable lithium metal anode with high utilization
Towards stable sodium metal battery with high voltage output through dual electrolyte design
Carbon-based current collector materials for sodium metal anodes
An in-depth insight of a highly reversible and dendrite-free Zn metal anode in an hybrid electrolyte
An in-situ formed stable interface layer for high-performance sodium metal anode in a non-flammable electrolyte
2D anionic nanosheet additive for stable Zn metal anodes in aqueous electrolyte
Highly reversible and dendrite-free Zn electrodeposition enabled by a thin metallic interfacial layer in aqueous batteries
Core–Shell C@Sb Nanoparticles as a Nucleation Layer for High-Performance Sodium Metal Anodes
Stable Sodium Metal Anode Enabled by an Interface Protection Layer Rich in Organic Sulfide Salt
2D Sn/C freestanding frameworks as a robust nucleation layer for highly stable sodium metal anodes with a high utilization
Graphene-Encapsulated CuP<sub>2</sub>: A Promising Anode Material with High Reversible Capacity and Superior Rate-Performance for Sodium-Ion Batteries
Stable lithium metal anodes enabled by inorganic/organic double-layered alloy and polymer coating