Area of research
Renewable Energy, Sustainability and the Environment · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Catalysis and Nanocomposite, with related work in Polypyrrole, Polyaniline, Anode. Notable publications include 'Oxygen vacancy on hollow sphere CuFe2O4 as an efficient Fenton-like catalysis for organic pollutant degradation over a wide pH range', 'Polymer nanocomposites for energy storage, energy saving, and anticorrosion', and 'Magnetic graphene oxide nanocomposites: nanoparticles growth mechanism and property analysis'.
Cobalt single-atom catalyst for hydrogen peroxide electrochemical detection in waterlogged foods and living cancer cells
Sponge-like adsorption strategy for boosting nanoplastics removal on semi-flexible FeNi-layered double hydroxides via variable-valence doping
Organic Dye Molecule Intercalated Vanadium Oxygen Hydrate Enables High‐Performance Aqueous Zinc‐Ion Storage
Oxygen vacancy on hollow sphere CuFe2O4 as an efficient Fenton-like catalysis for organic pollutant degradation over a wide pH range
Polymer nanocomposites for energy storage, energy saving, and anticorrosion
Electropolymerized polypyrrole nanocomposites with cobalt oxide coated on carbon paper for electrochemical energy storage
Electropolymerized polyaniline/manganese iron oxide hybrids with an enhanced color switching response and electrochemical energy storage
Porous ternary TiO<sub>2</sub>/MnTiO<sub>3</sub>@C hybrid microspheres as anode materials with enhanced electrochemical performances
Magnetic graphene oxide nanocomposites: nanoparticles growth mechanism and property analysis