Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
Research interests include Materials science, Perovskite (structure), Composite material, Optoelectronics, Coating, and Fabrication.
Improving the Efficiency and Stability of Green-Light Perovskite CsPbBr<sub>3</sub> LEDs via Low-Temperature Annealing
Slot‐Die Coating for Scalable Fabrication of Perovskite Solar Cells and Modules
Artificial Muscles Based on Coiled Conductive Polymer Yarns
High Sensitivity Triboelectric Based Flexible Self-Powered Tactile Sensor with Bionic Fingerprint Ring Structure
Enhancing uniformity in large-area slot die coating of low-viscosity perovskite ink
Scalable solution-phase processing of halide perovskite films: Solvent removal, quenching methods, and film drying
Tough hydrogel–elastomer hybrids hydrophobically regulated by an MXene for motion monitoring in harsh environments
Electrically driven hydrogel actuators: working principle, material design and applications
Thermal-sensing actuator based on conductive polymer ionogel for autonomous human-machine interaction
Nonlinear Viscoelasticity and Toughening Mechanisms in Nanoclay-PNIPAAm Double Network Hydrogels
Flexible Wet-Spun PEDOT:PSS Microfibers Integrating Thermal-Sensing and Joule Heating Functions for Smart Textiles
Vacancy Pair-Induced Charge Rebalancing with Surface and Interfacial Dual Polarization for CO<sub>2</sub> Photoreduction
Enhanced energy harvester performance by a tension annealed carbon nanotube yarn at extreme temperatures
Tracking carrier and exciton dynamics in mixed-cation lead mixed-halide perovskite thin films
Self-Healing Silicone Elastomer with Stable and High Adhesion in Harsh Environments
Self-powered slide tactile sensor with wheel-belt structures based on triboelectric effect and electrostatic induction
Stretchable and self-healable hydrogel-based capacitance pressure and strain sensor for electronic skin systems
Acene-based organic semiconductors for organic light-emitting diodes and perovskite solar cells
Thienylvinylenethienyl and Naphthalene Core Substituted with Triphenylamines—Highly Efficient Hole Transporting Materials and Their Comparative Study for Inverted Perovskite Solar Cells