Area of research
Biomedical Engineering · Polymers and Plastics
Research interest
Research interests include Triboelectric effect, Computer science, Energy harvesting, Wearable computer, Materials science, and Nanogenerator.
Humanoid electronic-skin technology for the era of Artificial Intelligence of Things
Body‐Coupled‐Driven Object‐Oriented Natural Interactive Interface
A comprehensive review on triboelectric sensors and AI-integrated systems
Technology Roadmap for Flexible Sensors
Water-Modulated Biomimetic Hyper-Attribute-Gel Electronic Skin for Robotics and Skin-Attachable Wearables
Soft Robotic Perception System with Ultrasonic Auto-Positioning and Multimodal Sensory Intelligence
Advanced Implantable Biomedical Devices Enabled by Triboelectric Nanogenerators
Robust triboelectric information‐mat enhanced by multi‐modality deep learning for smart home
Biometrics-protected optical communication enabled by deep learning–enhanced triboelectric/photonic synergistic interface
Progress of Advanced Devices and Internet of Things Systems as Enabling Technologies for Smart Homes and Health Care
Noncontact Human–Machine Interface Using Complementary Information Fusion Based on MEMS and Triboelectric Sensors
Constructing highly tribopositive elastic yarn through interfacial design and assembly for efficient energy harvesting and human-interactive sensing
A Non-Resonant Piezoelectric–Electromagnetic–Triboelectric Hybrid Energy Harvester for Low-Frequency Human Motions
Artificial Intelligence of Things (AIoT) Enabled Virtual Shop Applications Using Self‐Powered Sensor Enhanced Soft Robotic Manipulator
Artificial Intelligence of Things (AIoT) Enabled Floor Monitoring System for Smart Home Applications
Triboelectric Nanogenerators and Hybridized Systems for Enabling Next-Generation IoT Applications
Shadow enhanced self-charging power system for wave and solar energy harvesting from the ocean
Artificial intelligence of toilet (AI-Toilet) for an integrated health monitoring system (IHMS) using smart triboelectric pressure sensors and image sensor
Piezoelectric MEMS—evolution from sensing technology to diversified applications in the 5G/Internet of Things (IoT) era
Technology evolution from micro-scale energy harvesters to nanogenerators
Magnetic-interaction assisted hybridized triboelectric-electromagnetic nanogenerator for advanced human-machine interfaces
A humidity resistant and high performance triboelectric nanogenerator enabled by vortex-induced vibration for scavenging wind energy
A hybridized electromagnetic-triboelectric nanogenerator designed for scavenging biomechanical energy in human balance control
Haptic-feedback smart glove as a creative human-machine interface (HMI) for virtual/augmented reality applications
Progress in wearable electronics/photonics—Moving toward the era of artificial intelligence and internet of things
Machine Learning Glove Using Self‐Powered Conductive Superhydrophobic Triboelectric Textile for Gesture Recognition in VR/AR Applications
Deep learning-enabled triboelectric smart socks for IoT-based gait analysis and VR applications
Progress in<scp>TENG</scp>technology—A journey from energy harvesting to nanoenergy and nanosystem
Deep learning enabled smart mats as a scalable floor monitoring system
Technology evolution from self-powered sensors to AIoT enabled smart homes