Area of research
Biomedical Engineering · Biomaterials
Research interest
Research interests include Materials science, Composite material, Nanofiber, Absorption (acoustics), Spinning, and Mesoporous material.
Synthesis and characterization of a β-cyclodextrin-MOF-based porous hydrogel for efficient adsorption of Au3+, Ag+, and Pb2+ ions
Fe3O4@CNTs/PANI/PI fabric with magnetic–dielectric nanonetwork as a highly efficient microwave absorber
Eco-friendly natural dyeing of submicron cotton fabrics
Growth mechanism and phase transformation of ZrO <sub>2</sub> nanofibers fabricated by sol–gel electrospinning
Selective spectral absorption of nanofibers for color-preserving daytime radiative cooling
Ultrasonic cavitation enhanced photocatalytic CO2 reduction by superior flexible black BaTiO3 nanofibers
Fire-Resistant and Hierarchically Structured Elastic Ceramic Nanofibrous Aerogels for Efficient Low-Frequency Noise Reduction
The physical and chemical properties of hemp fiber prepared by alkaline pectinase–xylanase system
Novel P/Si based nanoparticles for durable flame retardant application on cotton
A Novel Concept to Produce Submicron-Cotton/Polyester Composite Core-Spun Yarn via Modified Apparatus
Emerging design principles, materials, and applications for moisture-enabled electric generation
Tailoring body surface infrared radiation behavior through colored nanofibers for efficient passive radiative heating textiles
Facile access to highly flexible and mesoporous structured silica fibrous membranes for tetracyclines removal
Comparison of the physical properties of heat-treated and hydrophobic modified glass fiber felt
Ultrathin Cellulose Voronoi-Nanonet Membranes Enable High-Flux and Energy-Saving Water Purification
Effect of heat treatment on the morphology, diameter and mesoporous of superfine glass fiber
Large-scale preparation of micro-gradient structured sub-micro fibrous membranes with narrow diameter distributions for high-efficiency air purification