Area of research
Biomedical Engineering · Polymers and Plastics
Research interest
Research interests include Triboelectric effect, Materials science, Nanotechnology, Nanogenerator, Wearable computer, and Contact electrification.
Lightweight and Mechanically Robust Cellulosic Triboelectric Materials for Wearable Self-Powered Rehabilitation Training
Cellulosic Triboelectric Elastomers for Energy Harvesting and Emerging Applications
Janus Asymmetric-Wettability Cellulosic Triboelectric Materials Enabled by Noncovalent Interactions
Harnessing the Hofmeister Effect for Simultaneous Strengthening and Toughening of Cellulosic Triboelectric Materials
Harnessing the Hofmeister Effect for Simultaneous Strengthening and Toughening of Cellulosic Triboelectric Materials
A Tough Monolithic‐Integrated Triboelectric Bioplastic Enabled by Dynamic Covalent Chemistry
Lightweight and Strong Cellulosic Triboelectric Materials Enabled by Cell Wall Nanoengineering
High Strength and Toughness Polymeric Triboelectric Materials Enabled by Dense Crystal-Domain Cross-Linking
Directional Moisture-Wicking Triboelectric Materials Enabled by Laplace Pressure Differences
Liquid–Solid Triboelectric Probes for Bubbles Status Monitoring
Customizing temperature-resistant cellulosic triboelectric materials for energy harvesting and emerging applications
Phase-Directed Assembly of Triboelectric Nanopaper for Self-Powered Noncontact Sensing
Smart Lanceolate Surface with Fast Fog-Digesting Performance for Triboelectric Energy Harvesting
Mechanically Robust Triboelectric Aerogels Enabled by Dense Bridging of MXene
Aramid Triboelectric Materials: Opportunities for Self‐Powered Wearable Personal Protective Electronics
Triboelectrically Empowered Biomimetic Heterogeneous Wettability Surface for Efficient Fog Collection
Graded Nanotexturing Architectural Wearable Triboelectric Sensor for Programmable Haptic Exploration
Spontaneous charging-induced droplets directional steering
Wearable strain insensitive triboelectric materials enabled by structure-induced self-orientation
Strong and Stable Woody Triboelectric Materials Enabled by Biphase Blocking
Fabrication of Advanced Cellulosic Triboelectric Materials via Dielectric Modulation
Multiscale Structural Nanocellulosic Triboelectric Aerogels Induced by Hofmeister Effect
Liquid–Solid Triboelectric Probes for Real‐Time Monitoring of Sucrose Fluid Status
Hierarchical porous triboelectric aerogels enabled by heterointerface engineering
Liquid metal-based triboelectric nanogenerators for energy harvesting and emerging applications
Tunable Anisotropic Structural Aramid Triboelectric Aerogels Enabled by Magnetic Manipulation
Triboelectric probes for investigating charge transfer at the colloid-solid interface
Dynamic Thermostable Cellulosic Triboelectric Materials from Multilevel‐Non‐Covalent Interactions
Stretchable Triboelectric Self‐Powered Sweat Sensor Fabricated from Self‐Healing Nanocellulose Hydrogels
Bioinspired asymmetric amphiphilic surface for triboelectric enhanced efficient water harvesting