Area of research
Biomedical Engineering · Polymers and Plastics
Research interest
Research interests include Materials science, Composite number, Composite material, Electrical conductor, Conductivity, and Natural rubber.
An antifreeze polyzwitterionic eutectogel with high conductivity and sensitivity at arctic-like conditions for multifunctional sensors and supercapacitors
Bio-Based Flexible Solar-Driven Sustainable Generator with Efficient Electricity Generation Enabled by Plant Transpiration System
Anisotropic eutectogels with ultra-high conductivity: aligned channels endows sensing directionality
Flexible Photothermal Phase Change Material with High Photothermal Properties Achieved by Promoted Dispersion of Hydrophobically Modified Eumelanin and its Photovoltaic Applications
Mechanically Robust, Environmentally Resistant, and Piezoionic Polyzwitterionic Composite Eutectogels Based on Polysaccharide Complexation Strategy for Stable Voltage Output, Energy Storage, and Strain Sensing
Multiscale Cellulose-Enhanced Zwitterionic Hydrogels Based on Electrostatic Regulation for the Strain Sensor and Human Motion Monitoring
Lithium bond-mediated multiple synergy enabling mechanical robustness, self-healing and ultrasensitive ion-conductive elastomers for flexible sensor
All‐Solid‐State Hydrophobic Ionic‐Conductor with Large Strain Self‐Recovery and High Toughness for Multi‐Scenario Sensing Applications
Non thermoplastic 3D molding based on coordination crosslinking for on-demand customization carboxymethyl chitosan-based packaging bags
A flexible wearable phase change composite with electro-/photo-thermal heating for personal thermal management and human body motion detection
Flexible, wearable triboelectric rubber with tunable surface charge density enabled by regulation of surface functional group density and permittivity
Super protective effect, ultra-high juice absorption and long-term antibacterial of Ag-2MI@Chitosan biodegradable sponge for fruit preservation and transportation
Flexible, sensitive and rapid humidity-responsive sensor based on rubber/aldehyde-modified sodium carboxymethyl starch for human respiratory detection
A highly conductive MXene-based rubber composite with relatively stable conductivity under small deformation and high sensing sensitivity at large strain
Harmonious state between filled and coated flexible conductive films: An ultra-high conductivity, sensitive and environmentally stable sensing film based on integrated layered structure
Enhanced antibacterial effect and biodegradation of coating via dual-in-situ growth based on carboxymethyl cellulose
Effects of carboxymethyl chitosan-assisted dispersion of silica on interface and mechanical properties of rubber composites