Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Anode and Lithium (medication), with related work in Graphene, Nanocomposite, Electrochemistry. Notable publications include 'Rational Design of Three-Dimensional Graphene Encapsulated with Hollow FeP@Carbon Nanocomposite as Outstanding Anode Material for Lithium Ion and Sodium Ion Batteries', 'A new generation of high performance anode materials with semiconductor heterojunction structure of SnSe/SnO2@Gr in lithium-ion batteries', and 'One-dimensional hybrid nanocomposite of high-density monodispersed Fe 3 O 4 nanoparticles and carbon nanotubes for high-capacity storage of lithium and sodium'.
Bio-derived 4-electron-accepting carbonyl-N-methylpyridinium species for high-performance lithium-organic batteries
Cost‐Effective Vat Orange 3‐Derived Organic Cathodes for Electrochemical Energy Storage
Rational Design of Bio-Derived Four-Electron-Accepting Carbonyl-N-Methylpyridinium Species for High-Performance Lithium/Organic Batteries
Conjugated Polymers with Benzoyl-<i>N</i>-methylpyridinium Units: An Effective Design Strategy for High-Performance Lithium-Ion Batteries
Rational Design of Stable Four-Electron-Accepting Carbonyl-N-methylpyridinium Species for High-Performance Lithium-Ion Batteries
Rational Design of Stable Four-Electron-Accepting Carbonyl-N-methylpyridinium Species for High-Performance Lithium-Ion Batteries
Double-shelled hollow carbon nanospheres as enclosed electrochemical reactors to enhance the lithium storage performance of silicon nanodots
Mn3O4 nanotubes encapsulated by porous graphene sheets with enhanced electrochemical properties for lithium/sodium-ion batteries
A controllable strategy for the self-assembly of WM nanocrystals/nitrogen-doped porous carbon superstructures (M = O, C, P, S, and Se) for sodium and potassium storage
A new generation of high performance anode materials with semiconductor heterojunction structure of SnSe/SnO2@Gr in lithium-ion batteries
Rational Design of Three-Dimensional Graphene Encapsulated with Hollow FeP@Carbon Nanocomposite as Outstanding Anode Material for Lithium Ion and Sodium Ion Batteries
Hollow ZnS submicrospheres encapsulated in carbon shells with enhanced lithium and sodium storage properties
One-dimensional hybrid nanocomposite of high-density monodispersed Fe<sub>3</sub>O<sub>4</sub> nanoparticles and carbon nanotubes for high-capacity storage of lithium and sodium
General formation of three-dimensional (3D) interconnected MxSy (M = Ni, Zn, and Fe)-graphene nanosheets-carbon nanotubes aerogels for lithium-ion batteries with excellent rate capability and cycling stability
Facile synthesis of MgCo2O4 nanowires as binder-free flexible anode materials for high-performance Li-ion batteries