Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Materials science, Thermodynamics, Thermal expansion, Ceramic, Electrolyte, and Lattice (music).
Prediction of lattice distortion and mechanical behavior of tetragonal phase (Bi0.2Na0.2Ba0.2Sr0.2Ca0.2)TiO3 high-entropy perovskite with A-site disorder from first-principles calculations
Lattice distortion, mechanical and thermodynamic properties of (TiZrHf)C and (TiZrHf)N ceramics
Study of thermal properties of TiCN by Debye Einstein model, Debye Grüneisen model and quasiharmonic approximation
First-principles calculations to investigate mechanical and thermodynamics properties of multi-anion oxycarbonitride ceramics TiCNO and TiZrCNO
Ab initio study of the lattice distortion and the vacancy defects in multi-anion oxycarbonitride ceramics TiCNO and TiZrCNO
Lattice distortion and the influence on mechanical and thermodynamic properties of high entropy (HfZrTaNbTi)X (X=C, N, NC) by Ab initio investigation
The lattice distortion, mechanical and thermodynamic properties of A(Zr0.2Sn0.2Ti0.2Hf0.2Nb0.2)O3 (A = Sr, Ba) high-entropy perovskite with B-site disorder: First principles prediction
The intrinsic mechanical properties of NbTaTiZr and the influence of alloying elements Mo and W: A first-principles study
Ab initio study of local lattice distortion of hexagonal closed-packed high-entropy (Mo0.25Nb0.25Ta0.25V0.25) (Al0.5Si0.5)2 and the influence on thermodynamic property
Temperature-dependent elastic properties of high entropy ceramic (ZrTaNbTi)C from self-consistent quasi-harmonic approximation
Stacking fault energy of basal plane for hexagonal closed-packed medium entropy alloy ZrHfTi: Ab initio prediction
Thermal Conductive 2D Boron Nitride for High‐Performance All‐Solid‐State Lithium–Sulfur Batteries
From Lithium‐Oxygen to Lithium‐Air Batteries: Challenges and Opportunities
Building better lithium-sulfur batteries: from LiNO3 to solid oxide catalyst
Tellurium@Ordered Macroporous Carbon Composite and Free‐Standing Tellurium Nanowire Mat as Cathode Materials for Rechargeable Lithium–Tellurium Batteries
Influence of carbon pore size on the discharge capacity of Li–O<sub>2</sub>batteries
Potential of metal-free “graphene alloy” as electrocatalysts for oxygen reduction reaction
Key parameters in design of lithium sulfur batteries