Area of research
Electrical and Electronic Engineering · Biomedical Engineering
Research interest
Research focused on Fibroin and SILK, with related work in Humidity, Textile, Nanotechnology. Notable publications include 'Silk Composite Electronic Textile Sensor for High Space Precision 2D Combo Temperature–Pressure Sensing', 'Full‐Textile Wireless Flexible Humidity Sensor for Human Physiological Monitoring', and 'Stretchable and Heat‐Resistant Protein‐Based Electronic Skin for Human Thermoregulation'.
Biomimetic Salinity Power Generation Based on Silk Fibroin Ion-Exchange Membranes
A capacitive humidity sensor based on all-protein embedded with gold nanoparticles @ carbon composite for human respiration detection
Stretchable and Heat‐Resistant Protein‐Based Electronic Skin for Human Thermoregulation
Graphene decorated carbonized cellulose fabric for physiological signal monitoring and energy harvesting
From Molecular Reconstruction of Mesoscopic Functional Conductive Silk Fibrous Materials to Remote Respiration Monitoring
Tailoring NiCoAl layered double hydroxide nanosheets for assembly of high-performance asymmetric supercapacitors
Silk Composite Electronic Textile Sensor for High Space Precision 2D Combo Temperature–Pressure Sensing
Full‐Textile Wireless Flexible Humidity Sensor for Human Physiological Monitoring
Using Wool Keratin as a Basic Resist Material to Fabricate Precise Protein Patterns
Crosslinked waterborne polyurethane with high waterproof performance