Area of research
Biomaterials · Biomedical Engineering
Research interest
Research focused on Fibroin and Triboelectric effect, with related work in SILK, Protein engineering, Osteoarthritis. Notable publications include 'Stretchable, Biocompatible, and Multifunctional Silk Fibroin-Based Hydrogels toward Wearable Strain/Pressure Sensors and Triboelectric Nanogenerators', 'A Skin‐Like Pressure‐ and Vibration‐Sensitive Tactile Sensor Based on Polyacrylamide/Silk Fibroin Elastomer', and 'Transparent, stretchable and degradable protein electronic skin for biomechanical energy scavenging and wireless sensing'.
A Skin‐Like Pressure‐ and Vibration‐Sensitive Tactile Sensor Based on Polyacrylamide/Silk Fibroin Elastomer
Predicting transport of intra-articularly injected growth factor fusion proteins into human knee joint cartilage
Stretchable, Stable, and Degradable Silk Fibroin Enabled by Mesoscopic Doping for Finger Motion Triggered Color/Transmittance Adjustment
Stretchable, Biocompatible, and Multifunctional Silk Fibroin-Based Hydrogels toward Wearable Strain/Pressure Sensors and Triboelectric Nanogenerators
Transparent, stretchable and degradable protein electronic skin for biomechanical energy scavenging and wireless sensing
From Molecular Reconstruction of Mesoscopic Functional Conductive Silk Fibrous Materials to Remote Respiration Monitoring
Artificially Engineered Protein Polymers