Area of research
Materials Chemistry · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Catalytic Processes in Materials Science, Catalysis and Oxidation Reactions, TiO2 Photocatalysis and Solar Cells, and Nanomaterials for catalytic reactions.
A critical role of N4-acetylation of cytidine in mRNA by NAT10 in T cell expansion and antiviral immunity
Recent progress in biomass-derived single-atom catalysts for environmental remediation
Enhanced electron transfer using NiCo2O4@C hollow nanocages with an electron-shuttle effect for efficient tetracycline degradation
Solvent-free synthesis of foam board-like CoSe2 alloy to selectively generate singlet oxygen via peroxymonosulfate activation for sulfadiazine degradation
Construction of N-Fe-S bridge in atomic iron catalyst for boosting Fenton-like reactions
Self-templating synthesis of biomass-based porous carbon nanotubes for energy storage and catalytic degradation applications
Upcycling biomass waste into Fe single atom catalysts for pollutant control
One-step solvothermal construction of coral reef-like FeS2/biochar to activate peroxymonosulfate for efficient organic pollutant removal
Highly dispersed CoFe2O4 spinel on biomass-derived 3D porous carbon framework for much enhanced Fenton-like reactions
Facile synthesis of cobalt-iron layered double hydroxides nanosheets for direct activation of peroxymonosulfate (PMS) during degradation of fluoroquinolones antibiotics
In situ N-doped carbon-coated mulberry-like cobalt manganese oxide boosting for visible light driving photocatalytic degradation of pharmaceutical pollutants
3D hierarchical H2-reduced Mn-doped CeO2 microflowers assembled from nanotubes as a high-performance Fenton-like photocatalyst for tetracycline antibiotics degradation