Area of research
Transportation · Sociology and Political Science
Research interest
Research interests include Materials science, Electronics, Composite material, Spheroid, Elastomer, and Nanotechnology.
Self‐Healable and 4D Printable Hydrogel for Stretchable Electronics
Tension-driven three-dimensional printing of free-standing Field’s metal structures
Self-healing actuatable electroluminescent fibres
Artificial Muscles for Underwater Soft Robots: Materials and Their Interactions
Development of an Ultrastretchable Double-Network Hydrogel for Flexible Strain Sensors
Artificially innervated self-healing foams as synthetic piezo-impedance sensor skins
Near–hysteresis-free soft tactile electronic skins for wearables and reliable machine learning
Progress and Roadmap for Intelligent Self‐Healing Materials in Autonomous Robotics
Super Tough and Self-Healable Poly(dimethylsiloxane) Elastomer via Hydrogen Bonding Association and Its Applications as Triboelectric Nanogenerators
Submerged and non-submerged 3D bioprinting approaches for the fabrication of complex structures with the hydrogel pair GelMA and alginate/methylcellulose
Self-healing electronic skins for aquatic environments
Wireless body sensor networks based on metamaterial textiles
A neuro-inspired artificial peripheral nervous system for scalable electronic skins
A transparent, self-healing and high-κ dielectric for low-field-emission stretchable optoelectronics
Self-Healing Electronic Materials for a Smart and Sustainable Future
Cell number per spheroid and electrical conductivity of nanowires influence the function of silicon nanowired human cardiac spheroids
Nanowires and Electrical Stimulation Synergistically Improve Functions of hiPSC Cardiac Spheroids
Silicon Nanowire-Induced Maturation of Cardiomyocytes Derived from Human Induced Pluripotent Stem Cells