Affiliation:
1. School of Chemistry and Chemical Engineering Guangzhou University Guangzhou 510006 P. R. China
2. Instrumentation and Service Center for Science and Technology Beijing Normal University Zhuhai 519087 P. R. China
3. Joint Institute of Guangzhou University & Institute of Corrosion Science and Technology Guangzhou 510006 China
4. Department of Chemical and Materials Engineering University of Alberta Edmonton T6G 1H9 Canada
Abstract
AbstractUnderwater adhesive superoleophobic coatings are in high demand for underwater activities. However, hydrogel coatings have limited adhesiveness for long periods. In this work, a novel approach is presented that employs synergistic segment orientation and covalent anchoring strategies to fabricate superoleophobic hydrogel coatings on different substrates without prior surface treatments. The coating demonstrated remarkable long‐lasting superoleophobic properties even in extreme underwater environments. It also exhibited strong adhesion with a shear strength of up to 5 MPa and antiswelling and antibiofouling properties, making it highly effective for applications in antiliquid adhesion, crude oil self‐cleaning, and antibiofouling. The simplicity, ease of preparation, and exceptional performance of the hydrogel coating provide a notable example for the synergistic segment orientation and covalent anchoring of hydrogel‐based underwater coatings. Therefore, this study provides a new paradigm for designing straightforward surface‐functional materials.
Funder
National Natural Science Foundation of China
Basic and Applied Basic Research Foundation of Guangdong Province
Cited by
6 articles.
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