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受内吞作用启发的两性离子凝胶胶带,用于高效且可持续的油下粘附

Endocytosis-Inspired Zwitterionic Gel Tape for High-Efficient and Sustainable Underoil Adhesion.

作者信息

Tang Yueman, Si Mengjie, Wang Yan-Jie, Zhou Jiahui, Deng Yuming, Xia Kaishun, Jiang Zhen, Zhang Dong, Zheng Si Yu, Yang Jintao

机构信息

College of Materials Science & Engineering, Zhejiang University of Technology, Hangzhou, 310014, P. R. China.

School of Materials Science and Engineering, Tiangong University, Tianjin, 300387, P. R. China.

出版信息

Adv Sci (Weinh). 2024 Nov;11(42):e2407501. doi: 10.1002/advs.202407501. Epub 2024 Sep 9.

Abstract

Marine oil exploration is important yet greatly increases the risk of oil leakage, which will result in severe environment pollution and economic losses. It is an urgent need to develop effective underoil adhesives. However, realizing underoil adhesion is even harder than those underwater, due to the stubborn attachment of a highly viscous oil layer on target surface. Here, inspired by endocytosis, a tough gel tape composed of zwitterionic polymer network and zwitterionic surfactants is developed. The amphiphilic surfactants can form micelle to capture the oil droplets and transport them from the interface to gel via electrostatic attraction of polymer backbone, mimicking the endocytosis and achieving robust underoil adhesion. Benefiting from the oil-resistance of polymer backbone, the gel further realizes a combination of i) long-term adhesion with high durability, ii) repeated adhesion in oil, and iii) renewable adhesion efficiency after exhausted use. The tape exhibits an ultra-high adhesive toughness of 2446.86 J m to stainless steel in silicone oil after 30 days' oil-exposure; such value of adhesive toughness surpasses many of those achieved in underwater adhesion and is greater than underoil adhesion performance of commercial tape. The strategy illustrated here will motivate the design of sustainable and efficient adhesives for wet environments.

摘要

海洋石油勘探至关重要,但同时也大大增加了石油泄漏的风险,这将导致严重的环境污染和经济损失。开发有效的水下胶粘剂迫在眉睫。然而,由于高粘性油层顽固地附着在目标表面,实现水下粘附比水下粘附更加困难。在此,受胞吞作用启发,开发了一种由两性离子聚合物网络和两性离子表面活性剂组成的坚韧凝胶胶带。两亲性表面活性剂可以形成胶束来捕获油滴,并通过聚合物主链的静电吸引将它们从界面传输到凝胶中,模拟胞吞作用并实现强大的水下粘附。受益于聚合物主链的耐油性,该凝胶进一步实现了以下几点的结合:i)具有高耐久性的长期粘附;ii)在油中反复粘附;iii)耗尽使用后可再生的粘附效率。在暴露于油30天后,该胶带在硅油中对不锈钢表现出2446.86 J/m的超高粘附韧性;这种粘附韧性值超过了许多水下粘附所达到的值,并且大于商业胶带的水下粘附性能。这里阐述的策略将推动针对潮湿环境的可持续和高效胶粘剂的设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ca4/11558084/167c296b2097/ADVS-11-2407501-g006.jpg

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