Area of research
Electronic, Optical and Magnetic Materials · Biomedical Engineering
Research interest
Research interests include Materials science, Nanotechnology, Supercapacitor, Graphene, Carbide, and Laser.
Upgrading carbonaceous materials: Coal, tar, pitch, and beyond
Two-dimensional quantum-sheet films with sub-1.2 nm channels for ultrahigh-rate electrochemical capacitance
Engineering Fossil Fuel-Derived Aromatics: Fundamentals And Novel Opportunities
Laser-induced and KOH-activated 3D graphene: A flexible activated electrode fabricated via direct laser writing for in-plane micro-supercapacitors
Laser-engineered heavy hydrocarbons: Old materials with new opportunities
Laser-Induced Tar-Mediated Sintering of Metals and Refractory Carbides in Air
Laser-sculptured ultrathin transition metal carbide layers for energy storage and energy harvesting applications
High‐Voltage Supercapacitors Based on Aqueous Electrolytes
Self‐Assembly of Large‐Area 2D Polycrystalline Transition Metal Carbides for Hydrogen Electrocatalysis
Titanium Disulfide Coated Carbon Nanotube Hybrid Electrodes Enable High Energy Density Symmetric Pseudocapacitors
Synthesis of Single‐Layer Graphene on Nickel Using a Droplet CVD Process