Area of research
Biomedical Engineering · Mechanical Engineering
Research interest
Research interests include Advanced Sensor and Energy Harvesting Materials, Advanced Materials and Mechanics, Micro and Nano Robotics, and Conducting polymers and applications.
Antagonistic-contracting high-power photo-oscillators for multifunctional actuations
Tough Hydrogel Electrolytes for Anti‐Freezing Zinc‐Ion Batteries
Sunlight-powered self-excited oscillators for sustainable autonomous soft robotics
Tough, anti-freezing and conductive ionic hydrogels
Poly(vinyl alcohol) Hydrogels with Broad‐Range Tunable Mechanical Properties via the Hofmeister Effect
Somatosensory actuator based on stretchable conductive photothermally responsive hydrogel
Highly stretchable self-sensing actuator based on conductive photothermally-responsive hydrogel
Tunable Sponge‐Like Hierarchically Porous Hydrogels with Simultaneously Enhanced Diffusivity and Mechanical Properties
Solar anti-icing surface with enhanced condensate self-removing at extreme environmental conditions
Stimuli-Responsive Polymers for Soft Robotics
Hydrogel Ionotronics with Ultra‐Low Impedance and High Signal Fidelity across Broad Frequency and Temperature Ranges
Heterogeneous Hydrogel Structures with Spatiotemporal Reconfigurability using Addressable and Tunable Voxels
Interactively mechanochromic electronic textile sensor with rapid and durable electrical/optical response for visualized stretchable electronics
Rapid and scalable fabrication of ultra‐stretchable, anti‐freezing conductive gels by cononsolvency effect
Ultrastretchable Polyaniline-Based Conductive Organogel with High Strain Sensitivity
Superhydrophobic photothermal icephobic surfaces based on candle soot
Hierarchically Structured Stretchable Conductive Hydrogels for High-Performance Wearable Strain Sensors and Supercapacitors
4D Printable Tough and Thermoresponsive Hydrogels
Wood‐Inspired Morphologically Tunable Aligned Hydrogel for High‐Performance Flexible All‐Solid‐State Supercapacitors
Soft phototactic swimmer based on self-sustained hydrogel oscillator
Artificial phototropism for omnidirectional tracking and harvesting of light