A Self‐Strengthening Hydrogel Coating for Long‐Term Underwater Adhesion in Seawater Over 900 Days

自愈水凝胶 水下 材料科学 涂层 粘附 海水 水溶液 纳米技术 复合材料 电解质 人工海水 胶粘剂 化学工程 固化(化学) 沉浸式(数学) 细胞粘附
作者
Guangling He,Yujie Wang,Xinhao Liu,Hao Xu,Weina Jia,Yuye Dou,Lei Dong,Liangmin Yu
出处
期刊:Advanced Materials [Wiley]
卷期号:: e74463-e74463
标识
DOI:10.1002/adma.74463
摘要

Reliable underwater adhesion is a prerequisite for the practical application of hydrogels as underwater coatings. Despite extensive efforts to enhance adhesion strength, strong initial adhesion does not ensure long-term adhesion stability. Achieving durable underwater adhesion of hydrogels remains fundamentally challenging due to interfacial hydration and continuous water-induced network degradation, particularly in complex aqueous environments such as seawater. To overcome these limitations, a hydrogel coating that achieves persistent underwater adhesion in natural seawater for over 900 days is developed. Strong initial adhesion is established across diverse substrates through synergistic interfacial interactions, while network integrity is maintained during prolonged immersion through multiple cooperative intermolecular interactions and continuous quinone-mediated oxidative crosslinking. Consequently, the hydrogel exhibits persistently low water uptake (≈162 wt% after 900 days), suppresses swelling-induced deterioration of interfacial adhesion, and maintains a shear adhesion strength of ≈110 kPa after 900 days of seawater immersion. The hydrogel coating also exhibits antibacterial and anti-algal activity for marine antifouling, underwater superoleophobicity, and applicability as a gel electrolyte for flexible supercapacitors. This work establishes a design principle for achieving long-term underwater functional hydrogels beyond previously reported time scales and provides a general strategy for developing continuously curing materials in underwater and marine environments.
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