Litcius/Paper detail

A Universal Strategy for Tough Adhesion of Wet Soft Material

Yang Gao, Jiaojiao Chen, Xiuyuan Han, Yudong Pan, Peiyao Wang, Tiejun Wang, Tongqing Lu

2020Advanced Functional Materials207 citationsDOI

Abstract

Abstract Achieving adhesion between hydrogels and diverse materials in a facile and universal way is challenging. Existing methods rely on special chemical or physical properties of the hydrogel and adherends, which lead to limited applicability and complicated pretreatments. A stitch‐bonding strategy is proposed here by introducing a polymer chain with versatile functional group and triggerable crosslinking property inspired by catechol chemistry. The polymer chain can stitch the hydrogel by forming a network in topological entanglement with the preexisting hydrogel network, and directly bond to the adherend surface by versatile chemical interactions. Through this, the polymer chain solution works as a universal glue for facile adhesion of hydrogels to diverse substrates like metals, glasses, elastomers, plastics, and living tissues, without requiring any chemical design or pretreatment for the hydrogel and adherends. The adhesion energy between polyacrylamide hydrogel and diverse substrates can reach 200–400 J m −2 , and it can reach ≈900 J m −2 with a toughened polyacrylic acid polyacrylamide hydrogel. The mechanism of stitch‐bonding strategy is illustrated by studying various influence factors.

Topics & Concepts

Materials scienceSelf-healing hydrogelsAdhesionElastomerPolymerPolyacrylamidePolyacrylic acidPolymer scienceAdhesiveNanotechnologyComposite materialPolymer chemistryLayer (electronics)Advanced Sensor and Energy Harvesting MaterialsPolymer Surface Interaction StudiesAdhesion, Friction, and Surface Interactions