Area of research
Biomedical Engineering · Electrical and Electronic Engineering
Research interest
Research focused on Self-healing hydrogels and Elastomer, with related work in Adhesive, Nanotechnology, Photopolymer. Notable publications include 'A Transparent, Highly Stretchable, Autonomous Self‐Healing Poly(dimethyl siloxane) Elastomer', 'Orthogonal photochemistry-assisted printing of 3D tough and stretchable conductive hydrogels', and 'Visible-light-assisted multimechanism design for one-step engineering tough hydrogels in seconds'.
Designing Strong yet Tough, Multifunctional and Printable Dynamic Cross‐Linking Waterborne Polyurethane for Customizable Smart Soft Devices
Co-initiating-system dual-mechanism drives the design of printable entangled polymer multinetworks
Nitrogen-Doped Two-Dimensional Carbon Nanosheets for High-Sulfur-Loading Lithium–Sulfur Batteries via a Lignin-Based High-Internal-Phase Pickering Emulsion Strategy
Designing Tough, Printable, and Adaptable Eutectogels with Multinetworks via Synergy of Rapid Orthogonal Photopolymerizations and Solvent Effect in Seconds
Stretchable and Self‐Healable Fiber‐Shaped Conductors Suitable for Harsh Environments
Customizable Low-Friction Tough Hydrogels for Potential Cartilage Tissue Engineering by a Rapid Orthogonal Photoreactive 3D-Printing Design
Visible-Light-Mediated Nano-biomineralization of Customizable Tough Hydrogels for Biomimetic Tissue Engineering
Protein Crystallization-Mediated Self-Strengthening of High-Performance Printable Conducting Organohydrogels
Hierarchical Self‐Assembly of Adhesive and Conductive Gels with Anion‐Coordinated Triple Helicate Junctions
Photoredox-Mediated Designing and Regulating Metal-Coordinate Hydrogels for Programmable Soft 3D-Printed Actuators
A possible new activator of PI3K‐Huayu Qutan Recipe alleviates mitochondrial apoptosis in obesity rats with acute myocardial infarction
Hierarchical Self‐Assembly of Adhesive and Conductive Gels with Anion‐Coordinated Triple Helicate Junctions
Orthogonal photochemistry-assisted printing of 3D tough and stretchable conductive hydrogels
Self-Assembled Chiral Phosphorescent Microflowers from Au Nanoclusters with Dual-Mode pH Sensing and Information Encryption
Printable Tough Adhesive for Instant Fatigue‐Resistant Bonding of Diverse Surfaces
Visible-light-assisted multimechanism design for one-step engineering tough hydrogels in seconds
A new soft-matter material with old chemistry: Passerini multicomponent polymerization-induced assembly of AIE-active double-helical polymers with rapid visible-light degradability
Rapidly Visible-Light-Mediated Photogelations for One-Step Engineering Multifunctional Tough Hydrogel Tubes
A Sunlight-Degradable Autonomous Self-Healing Supramolecular Elastomer for Flexible Electronic Devices
A Transparent, Highly Stretchable, Autonomous Self‐Healing Poly(dimethyl siloxane) Elastomer