Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Cathode and Anode, with related work in Oxide, Electrocatalyst, Nanodot. Notable publications include 'Well‐dispersed NiCoS 2 nanoparticles/rGO composite with a large specific surface area as an oxygen evolution reaction electrocatalyst', 'NiS2 nanodots on N,S-doped graphene synthesized via interlayer confinement for enhanced lithium-/sodium-ion storage', and 'Manipulating thermodynamics and crystal structure modulates P2/O3 biphasic layered oxide cathodes for sodium-ion batteries'.
Circumventing Self‐Diffusion Enables High‐Rate Hard Carbon Anodes
In situ surface engineering O3-layered oxide cathode via Na3PO4/P3-layered oxide dual coating layers
Universal Bulk Pre‐Oxidation Strategy for Programming High‐Performance Pitch‐Derived Hard Carbon Anodes
Cerium bulk/interfacial modulation for advanced layered oxide cathodes
Breaking Capacity–Stability Trade‐Off in Sodium Layered Oxide via Entropy‐Mediated Dual‐Site Engineering
Manipulating thermodynamics and crystal structure modulates P2/O3 biphasic layered oxide cathodes for sodium-ion batteries
Bismuth-doping boosting Na<sup>+</sup> diffusion kinetics of layered oxide cathode with radially oriented {010} active lattice facet for sodium-ion batteries
NiS2 nanodots on N,S-doped graphene synthesized via interlayer confinement for enhanced lithium-/sodium-ion storage
Well‐dispersed NiCoS <sub>2</sub> nanoparticles/rGO composite with a large specific surface area as an oxygen evolution reaction electrocatalyst