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Prof. Dr. Xinxing Zhang
National Key Laboratory of Advanced Polymer Materials, Polymer Research Institute of Sichuan Univers
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Reversible biobased adhesives enable closed-loop engineered composites
Tough and Self-Healing Recycled Polyurethanes with Tunable Fluorescence by Chain Aggregation
Self-adaptive and large-area sprayable thermal management coatings for energy saving
Robust yet Self-Healing Multimodal Actuators Enabled by Noncovalent Assembled Nanostructure
Strong, healable materials with bio-like ordered architectures and versatile functionality
Click dechlorination of halogen-containing hazardous plastics towards recyclable vitrimers
Monomer Trapping Synthesis Toward Dynamic Nanocon?nement Self-healing Eutectogels for Strain Sensing
Core–Shell Nanostructured Assemblies Enable Ultrarobust, Notch-Resistant and Self-Healing Materials
Multi-Modal Melt-Processing of Birefringent Cellulosic Materials for Eco-Friendly Anti-Counterfeiting
Large-Area Knittable, Wash-Durable, and Healable Smart Fibers for Dual-Modal Sensing Applications
Jellyfish-Inspired Self-Healing Luminescent Elastomers Based on Borate Nanoassemblies for Dual-Model Encryption
Supramolecularly Connected Armor-like Nanostructure Enables Mechanically Robust Radiative Cooling Materials
Supramolecular metallic foams with ultrahigh speci?cstrength and sustainable recyclability
Bioinspired H-Bonding Connected Gradient Nanostructure Actuators Based on Cellulose Nano?brils and Graphene
Pressure/Temperature Dual-Responsive Cellulose Nanocrystal Hydrogels for On-Demand Schemochrome Patterning
Dynamic Covalent Bonded Gradient Structured Actuators with Mechanical Robustness and Self-Healing Ability
Construction of Mineralization Nanostructures in Polymers for Mechanical Enhancement and Functionalization
Ln-HOF Nanofiber Organogels with Time-Resolved Luminescence for Programmable and Reliable Encryption
Upcycling of plastic wastes and biomass to mechanically robust yet recyclable energy-harvesting materials
Photoswitchable and Reversible Fluorescent Eutectogels for Conformal Information Encryption
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