Area of research
Electrical and Electronic Engineering · Control and Systems Engineering
Research interest
Research focused on Triboelectric effect and Energy harvesting, with related work in Nanogenerator, Electrical engineering, Wearable computer. Notable publications include 'Integrative analysis of gene expression and DNA methylation through one‐class logistic regression machine learning identifies stemness features in medulloblastoma', 'Hybrid Triboelectric–Electromagnetic Nanogenerator Based on a Tower Spring for Harvesting Omnidirectional Vibration Energy', and 'A Multi‐Layer Stacked Triboelectric Nanogenerator Based on a Rotation‐to‐Translation Mechanism for Fluid Energy Harvesting and Environmental Protection'.
A Flexible, Wearable, and Interference-Resistant Self-Powered Sensor for Body Motion Assessment
Hybrid Triboelectric–Electromagnetic Nanogenerator Based on a Tower Spring for Harvesting Omnidirectional Vibration Energy
A Multi‐Layer Stacked Triboelectric Nanogenerator Based on a Rotation‐to‐Translation Mechanism for Fluid Energy Harvesting and Environmental Protection
Low-grade heat energy harvesting system based on the shape memory effect and hybrid triboelectric-electromagnetic nanogenerator
Hybrid Triboelectric‐Electromagnetic Magnetic Energy Harvester‐Based Sensing for Wireless Monitoring of Transmission Lines
Integrative analysis of gene expression and DNA methylation through one‐class logistic regression machine learning identifies stemness features in medulloblastoma