Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Materials science, Anode, Lithium (medication), Electrochemistry, Carbonization, and Faraday efficiency.
Synergistic Bimetallic Interaction and Regulated Void Size in Isocubanite CuFe<sub>2</sub>S<sub>3</sub> Enables UltraFast and Durable Sodium Storage
The impact of support electronegativity on the electrochemical properties of platinum
Correction to: Electrochemical reconstruction: a new perspective on Sn metal–organic complex microbelts as robust anode for lithium storage
Constructing Abundant Oxygen-Containing Functional Groups in Hard Carbon Derived from Anthracite for High-Performance Sodium-Ion Batteries
Synergistic Structure and Iron‐Vacancy Engineering Realizing High Initial Coulombic Efficiency and Kinetically Accelerated Lithium Storage in Lithium Iron Oxide
Electrochemical reconstruction: a new perspective on Sn metal–organic complex microbelts as robust anode for lithium storage
Realizing Ultrafast and Robust Sodium-Ion Storage of Iron Sulfide Enabled by Heteroatomic Doping and Regulable Interface Engineering
N-doped carbon coated V2O3 nanospheres with V-C bond for superior sodium storage
Ni activated Mo<sub>2</sub>C by regulating the interfacial electronic structure for highly efficient lithium-ion storage
Regulating the electronic structure of MoO<sub>2</sub>/Mo<sub>2</sub>C/C by heterostructure and oxygen vacancies for boosting lithium storage kinetics
Controlled Synthesis of Ultrafine β-Mo<sub>2</sub>C Nanoparticles Encapsulated in N-Doped Porous Carbon for Boosting Lithium Storage Kinetics
Remaining Life Assessment for Steel After Low-Cycle Fatigue by Surface Crack Image
Experimental Investigations on Subsequent Yield Surface of Pure Copper by Single-Sample and Multi-Sample Methods under Various Pre-Deformation
Analysis of meso-inhomogeneous deformation on a metal material surface under low-cycle fatigue