Area of research
Atomic and Molecular Physics, and Optics · Materials Chemistry
Research interest
Research interests include Materials science, Catalysis, Condensed matter physics, Chemistry, Graphene, and Nanowire.
Spin-related Cu-Co pair to increase electrochemical ammonia generation on high-entropy oxides
Field-free switching of perpendicular magnetization by two-dimensional PtTe2/WTe2 van der Waals heterostructures with high spin Hall conductivity
All-electrical skyrmionic magnetic tunnel junction
Contact-electro-catalytic CO2 reduction from ambient air
Deterministic switching of perpendicular magnetization by out-of-plane anti-damping magnon torques
Field-Free Manipulation of Two-Dimensional Ferromagnet CrTe<sub>2</sub> by Spin–Orbit Torques
Molten salt synthesis of a highly crystalline graphitic carbon nitride homojunction from a deep eutectic solvent for selective photocatalytic oxidation
Oxygen Plasma Induced Nanochannels for Creating Bimetallic Hollow Nanocrystals
Patterning at the Resolution Limit of Commercial Electron Beam Lithography
Production of C<sub>3</sub>–C<sub>6</sub> Acetate Esters via CO Electroreduction in a Membrane Electrode Assembly Cell
Inverse Stellation of CuAu-ZnO Multimetallic-Semiconductor Nanostartube for Plasmon-Enhanced Photocatalysis
Direct Patterning of Zinc Sulfide on a Sub-10 Nanometer Scale <i>via</i> Electron Beam Lithography
Fluorescence Concentric Triangles: A Case of Chemical Heterogeneity in WS<sub>2</sub> Atomic Monolayer
Utilisation of gold nanoparticles on amine-functionalised UiO-66 (NH<sub>2</sub>-UiO-66) nanocrystals for selective tandem catalytic reactions
<i>p</i>‐CuO/<i>n</i>‐Si heterojunction solar cells with high open circuit voltage and photocurrent through interfacial engineering
Reduced Graphene Oxide Conjugated Cu<sub>2</sub>O Nanowire Mesocrystals for High-Performance NO<sub>2</sub> Gas Sensor
α-Fe2O3 nanotubes-reduced graphene oxide composites as synergistic electrochemical capacitor materials