Area of research
Biomedical Engineering · Materials Chemistry
Research interest
Research focused on Graphene and Nanotechnology, with related work in Self-healing hydrogels, Artificial muscle, Electrical conductor. Notable publications include 'Two‐Dimensional Fluorinated Graphene: Synthesis, Structures, Properties and Applications', 'Liquid metal-created macroporous composite hydrogels with self-healing ability and multiple sensations as artificial flexible sensors', and 'Self-Healing High Strength and Thermal Conductivity of 3D Graphene/PDMS Composites by the Optimization of Multiple Molecular Interactions'.
Carbon Dots‐Based Ultrastretchable and Conductive Hydrogels for High‐Performance Tactile Sensors and Self‐Powered Electronic Skin
The Fluorination of Boron‐Doped Graphene for CF<i><sub>x</sub></i> Cathode with Ultrahigh Energy Density
Water‐resistant conductive organogels with sensation and actuation functions for artificial neuro‐sensory muscular systems
Liquid metal-created macroporous composite hydrogels with self-healing ability and multiple sensations as artificial flexible sensors
Self-Healing High Strength and Thermal Conductivity of 3D Graphene/PDMS Composites by the Optimization of Multiple Molecular Interactions
Highly Transparent, Self-Healable, and Adhesive Organogels for Bio-Inspired Intelligent Ionic Skins
Two‐Dimensional Fluorinated Graphene: Synthesis, Structures, Properties and Applications