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- Self-Regulated Co-Assembly of Janus Bilayer Films for Real-Time Photothermal Imaging and Monitoring:Adv. Funct. Mater.,2025):e11451.
- Robust and Fast-Transforming Soft Microrobots Driven by Low Magnetic Field:Adv. Mater.,2025):2505193.
- Ultra-Tough Single-Network Hydrogels via the Synergy of Defect Elimination and Dual Crosslinking:Adv. Mater.,2025):2417795.
- Stretchable and self-healing conductive fibers from hierarchical silver nanowires-assembled network:Nano Res.,2024,17):763-770.
- Double confinement hydrogel network enables continuously regenerative solar-to-hydrogen conversion:Angew. Chem. Int. Ed.,2022,61):e202209687.
- Ultrastretchable and self-healing conductors with double dynamic network for omni-healable capacitive strain sensors:Nano Lett.,2022,22):1433-1442.
- Autonomous self-healing of highly stretchable supercapacitors at all climates:Nano Lett.,2022,22):6444-6453.
- Rapid printing and patterning of tough, self-healable, and recyclable hydrogel thin-films toward flexible sensing devices:Nano. Lett.,2022,22):8101-8108.
- Highly compressible and environmentally adaptive conductors with high-tortuosity interconnected cellular architecture:Nat. Syn.,2022,1):975-986.
- A multi-responsive healable supercapacitor:Nat. Commun.,2021,12):4297.
- Anisotropic and self-healing hydrogels with multi-responsive actuating capability:Nat. Commun.,2019,10):2202.
- A highly stretchable and real-time healable supercapacitor:Adv. Mater.,2019,31):1900573.
- Highly tough bioinspired ternary hydrogels synergistically reinforced by graphene/xonotlite network:Small,2018,14):e1800673.
- Self-healing and superstretchable conductors from hierarchical nanowire assemblies:Nat. Commun.,2018,9):2786.
- Graphene-thin films by noncovalent-interaction-driven assembly of graphene monolayers for flexible supercapacitors:Chem,2018,4):896-910.

