Area of research
Water Science and Technology · Surfaces, Coatings and Films
Research interest
Research interests include Membrane, Chemical engineering, Permeance, Nanofiltration, Polyamide, and Biofouling.
Tailor‐Made Heterocharged Covalent Organic Framework Membrane for Efficient Ion Separation
Anionic COF nanosheets construct porous and charged interlayer for the preparation of high-performance desalination membranes
3D covalent organic framework membrane with fast and selective ion transport
Antifouling poly(phenylene sulfide) membrane with an amphiphilic surface for efficient oil/water separation
Organic salt modulated preparation of ultra-thin and loose polyamide nanofiltration membranes with enhanced performance
Incorporating amphiphilic modifier into PVDF membrane through in-situ electrostatic crosslinking for efficient oil-water separation
Antifouling graphene oxide membranes for oil-water separation via hydrophobic chain engineering
Modulating interfacial polymerization with phytate as aqueous-phase additive for highly-permselective nanofiltration membranes
2D nanosheets seeding layer modulated covalent organic framework membranes for efficient desalination
In-situ assembly of polyelectrolyte via surface segregation of titanium oxide for antifouling membranes
Scalable Fabrication of Crystalline COF Membranes from Amorphous Polymeric Membranes
Ultrathin polyamide nanofiltration membranes with tunable chargeability for multivalent cation removal
Mix-charged polyamide membranes via molecular hybridization for selective ionic nanofiltration
Loosening ultrathin polyamide nanofilms through alkali hydrolysis for high-permselective nanofiltration
Electrostatic enhanced surface segregation approach to self-cleaning and antifouling membranes for efficient molecular separation
Engineering multi-pathway graphene oxide membranes toward ultrafast water purification
Perfluorooctanoyl chloride engineering toward high-flux antifouling polyamide nanofilms for desalination
Superwetting membranes: from controllable constructions to efficient separations
Biomass-derived cellulose nanoparticles display considerable neurotoxicity in zebrafish