Area of research
Biomedical Engineering · Polymers and Plastics
Research interest
Research interests include Materials science, Fiber, Composite material, Supercapacitor, Spinning, and Microwave.
Scalable fabrication of hierarchically porous graphene fibers via hydrothermal self-assembly and GO-assisted wet-spinning for high-performance flexible supercapacitors
Breathable, antibacterial, and highly sensitive tribo-sensors using HOF embedded nanofibers for movements monitoring and injury prevention
Hierarchically Structured Hollow Fiber Membranes for Efficient, Selective, and Scalable Mercury Ion Removal from Water
High-performance graphene fiber supercapacitors with controlled pore architecture via in-situ drawing process
Organic-inorganic PVA/Carbon microwave absorption composites: Tuning rheology to enable structurally diverse fabrication
Aramid nanofiber-reinforced MXene fibers for flexible supercapacitors
Graphene fiber-based flexible metal ion batteries: Preparation strategies, electrochemical performance and recent advances
Grain-Growth-Inhibited Mullite Fiber Sponges with Superior Thermal Insulation and Sound Absorption Properties
Dynamic Liquid Metal–Microfiber Interlocking Enables Highly Conductive and Strain‐insensitive Metastructured Fibers for Wearable Electronics
Rapid Regeneration of Graphite Anodes via Self‐Induced Microwave Plasma
Strong, high stretchable and ultrasensitive SEBS/CNTs hybrid fiber for high-performance strain sensor