Area of research
Biomedical Engineering · Computational Mechanics
Research interest
Research focused on Wearable computer and Triboelectric effect, with related work in Nanogenerator, Gesture, Vortex. Notable publications include 'Self‐Powered Gesture Recognition Wristband Enabled by Machine Learning for Full Keyboard and Multicommand Input', 'Body Temperature Enhanced Adhesive, Antibacterial, and Recyclable Ionic Hydrogel for Epidermal Electrophysiological Monitoring', and 'Liutex theoretical system and six core elements of vortex identification'.
A Biomimetic Epidermal Sensing Sucker via Stress Excitation for Personalized Cardiovascular Monitoring
Emerging intelligent wearable devices for cardiovascular health monitoring
A patterned mechanical–electrical coupled sensing patch for multimodal muscle function evaluation
Bacterial film-based degradable triboelectric nanogenerator for both contact and non-contact sensing
Interface-induced high piezoelectric γ-glycine-based flexible biodegradable films
A Portable Self‐Powered Turbine Spirometer for Rehabilitation Monitoring on COVID‐19
Self‐Powered Gesture Recognition Wristband Enabled by Machine Learning for Full Keyboard and Multicommand Input
Body Temperature Enhanced Adhesive, Antibacterial, and Recyclable Ionic Hydrogel for Epidermal Electrophysiological Monitoring
Artificial intelligence‐enhanced skin‐like sensors based on flexible nanogenerators
Wearable Exoskeleton System for Energy Harvesting and Angle Sensing Based on a Piezoelectric Cantilever Generator Array
Dual Mode Rotary Triboelectric Nanogenerator for Collecting Kinetic Energy from Bicycle Brake
Liutex theoretical system and six core elements of vortex identification