Area of research
Electronic, Optical and Magnetic Materials · Water Science and Technology
Research interest
Research interests include Biochar, Materials science, Selectivity, Chemical engineering, Fermentation, and In situ.
Ruthenium catalysts for hydrogenation of biomass-based levulinic acid for efficient γ-valerolactone synthesis
Ultramicropore-rich N-doped porous biochar from discarded cigarette butts for efficient CO2 capture with ultra-high adsorption capacity and selectivity
Effective removal of tetracycline antibiotics from water by in-situ nitrogen-doped porous biochar derived from waste antibiotic fermentation residues
In Situ, Nitrogen-Doped Porous Carbon Derived from Mixed Biomass as Ultra-High-Performance Supercapacitor
Efficient CO2 capture by ZIF-8-derived in-situ nitrogen-doped nanoporous carbon with ultra-high selectivity and stability
Effective CO2 capture by in-situ nitrogen-doped nanoporous carbon derived from waste antibiotic fermentation residues
N/O Co-doped hierarchical nanoporous biochar derived from waste polypropylene nonwoven for high-performance supercapacitors