Area of research
Biomedical Engineering · Molecular Medicine
Research interest
Research focused on Self-healing hydrogels and Nanotechnology, with related work in Composite material, Polymer, Soft robotics. Notable publications include 'Hydrogel machines', 'Anti-fatigue-fracture hydrogels', and 'Muscle-like fatigue-resistant hydrogels by mechanical training'.
A novel fluorescent probe utilizing Michael addition for the rapid detection of sulfur dioxide derivatives in food
Bioinspired Hierarchical Hydrogels Engineered with Extreme Impact Resistance
A rapid and specific fluorescent probe based on ESIPT-AIE-active for copper ion quantitative detection in food and environmental samples
Biomimetic Dual-Layer Architectural Hydrogel Bandage with Smart Thermally Self-Contraction for Enhanced Wound Closure and Burn Wound Healing
Construction of a highly sensitive fluorescent probe for accurate quantification of sulfite derivatives in food, biological, and environmental systems
Hierarchically‐Structured and Mechanically‐Robust Hydrogel Electrolytes for Flexible Zinc‐Iodine Batteries
Integrated use of Bayer red mud and electrolytic manganese residue in limestone calcined clay cement (LC3) via thermal treatment activation
Hierarchically‐Structured and Mechanically‐Robust Hydrogel Electrolytes for Flexible Zinc‐Iodine Batteries (Adv. Funct. Mater. 45/2024)
Fatigue‐Resistant Conducting Polymer Hydrogels as Strain Sensor for Underwater Robotics
Federated Learning of Large Language Models with Parameter-Efficient Prompt Tuning and Adaptive Optimization
Impact‐Resistant Hydrogels by Harnessing 2D Hierarchical Structures (Adv. Mater. 1/2023)
Selective crack propagation in steel-nickel component printed by wire arc directed energy deposition
A versatile supramolecular nanoagent for three-pronged boosting chemodynamic therapy
Impact‐Resistant Hydrogels by Harnessing 2D Hierarchical Structures
Bioinspired 3D Printing of Functional Materials by Harnessing Enzyme‐Induced Biomineralization
Bioinspired 3D Printing of Functional Materials by Harnessing Enzyme‐Induced Biomineralization (Adv. Funct. Mater. 34/2022)
3D printing of highly stretchable hydrogel with diverse UV curable polymers
Anisotropically Fatigue‐Resistant Hydrogels
Bioinspired 2D Isotropically Fatigue‐Resistant Hydrogels
Sub-5 nm single crystalline organic p–n heterojunctions
Pillar[6]arene-Based Supramolecular Nanocatalysts for Synergistically Enhanced Chemodynamic Therapy by the Intracellular Cascade Reaction
Tumor microenvironment-activatable boolean logic supramolecular nanotheranostics based on a pillar[6]arene for tumor hypoxia imaging and multimodal synergistic therapy
Fatigue-resistant adhesion of hydrogels
Dynamic intermolecular interactions through hydrogen bonding of water promote heat conduction in hydrogels
Anti-fatigue-fracture hydrogels
Muscle-like fatigue-resistant hydrogels by mechanical training
Ingestible hydrogel device
Controlling Spatiotemporal Mechanics of Supramolecular Hydrogel Networks with Highly Branched Cucurbit[8]uril Polyrotaxanes