Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Materials science, Ion, Anode, Diffusion, Amorphous solid, and Casimir effect.
Polyamine‐Mediated Proton/TFSI <sup>−</sup> Dual Capture Enables High‐Voltage PEO‐Based All‐Solid‐State Li Batteries
Pushing slope- to plateau-type behavior in hard carbon for sodium-ion batteries <i>via</i> local structure rearrangement
Impact of metal oxidation on ice growth and melting
Mechanism for ice growth on the surface of a spherical water droplet
Understanding ice and water film formation on soil particles by combining density functional theory and Casimir-Lifshitz forces
Tuning the Casimir-Lifshitz force with gapped metals
Premelting and formation of ice due to Casimir-Lifshitz interactions: Impact of improved parameterization for materials
Mechanically Reinforced Localized Structure Design to Stabilize Solid–Electrolyte Interface of the Composited Electrode of Si Nanoparticles and TiO<sub>2</sub> Nanotubes
Stability and electronic properties of phosphorene oxides: from 0-dimensional to amorphous 2-dimensional structures
A computational study of Na behavior on graphene
Insertion energetics of lithium, sodium, and magnesium in crystalline and amorphous titanium dioxide: A comparative first-principles study
Comparative computational study of the energetics of Li, Na, and Mg storage in amorphous and crystalline silicon
Controlling Na diffusion by rational design of Si-based layered architectures
In search of high performance anode materials for Mg batteries: Computational studies of Mg in Ge, Si, and Sn
A Comparative Computational Study of Structures, Diffusion, and Dopant Interactions between Li and Na Insertion into Si
A computational study of the insertion of Li, Na, and Mg atoms into Si(111) nanosheets