超分子化学
粘附
水下
马朗戈尼效应
材料科学
纳米技术
胶粘剂
基质(水族馆)
离子键合
生物污染
氢键
粘弹性
成核
凝聚
超分子组装
离子强度
溶剂
静电
自组装
分子动力学
化学工程
化学物理
细胞粘附
静电学
作者
Qinyu Hu,Hui Li,Jiayin Chen,Jun Zhang,Yan Zhang,Zuyong Wang,Xueao Jiang,Gai Zhao,Huajun Tian,Shiguo Zhang
标识
DOI:10.1038/s41467-026-76507-2
摘要
Achieving rapid, durable, and recyclable underwater adhesion has long presented significant challenges, complicated by hydration layers, slow curing processes, and environmental concerns linked to traditional adhesives. In this work, we introduce an underwater adhesive based on supramolecular ionic liquids, whose functional performance arises from solvent-exchange-mediated self-assembly. By utilizing the Marangoni effect alongside dynamic non-covalent interactions, such as hydrogen bonding, π-π stacking, and electrostatic interactions, we attain fast underwater adhesion with high strength and long-term stability, while ensuring excellent recyclability. Marangoni flow not only speeds up supramolecular aggregation but also effectively penetrates hydration layers, enabling close contact with submerged substrate surfaces. Spectroscopic and theoretical analyses reveal the development of reversible non-covalent networks and guided molecular rearrangements during solvent exchange. This research combines supramolecular chemistry and macroscopic interfacial science to advance adaptive materials with customizable adhesion capabilities. ‘Developing rapid, durable,and recyclable underwater adhesion is challenging and requires complex designs, slow curing, and environmental issues. Here the authors report an adhesive based on ionic liquids using the Marangoni effect combined with non-covalent interactions to achieve a fast strong and stable underwater adhesion with excellent recyclability’
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