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鱿鱼启发的弹性体海洋涂层具有高效的防污策略:亲水防御表面和较低的模量。

Squid inspired elastomer marine coating with efficient antifouling strategies: Hydrophilized defensive surface and lower modulus.

机构信息

College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310027, China.

CNOOC Changzhou Paint and Coating Industry Research Institute Co., Ltd, Changzhou 213016, China.

出版信息

Colloids Surf B Biointerfaces. 2022 May;213:112392. doi: 10.1016/j.colsurfb.2022.112392. Epub 2022 Feb 3.

Abstract

In antifouling applications for the marine industry, low surface energy coatings entail turbulent water flow to release marine biofouling, which presents a substantial challenge for antifouling in the static situation. The traditional solution is to add environmentally friendly antifouling agents, but it has the problem of exhaustion. Therefore, the low surface energy elastic antifouling coating without antifoulants has high research value. Herein, inspired by soft body and epidermal mucus of squid, the stable polyvinylpyrrolidone (PVP) hydrophilic segments were introduced to modify the polydimethylsiloxane-based polyurethane (PDMS-PU), realizing low surface energy elastomer coatings with hydrophilized defensive surface and reduced elastic modulus (<1.1 MPa). In an aqueous environment, the tailored surface exposed sufficient stable hydrophilic segments, exerting excellent antifouling performance, which improved the anti-adsorption effect on biological proteins, bacteria (antibacterial rate 95.24%) and algae (cover rate <3%). The coating exhibited excellent marine antifouling performance within 150 days and also gave a new impetus to developing an eco-friendly and sustainable solution for no-antifoulant marine antifouling applications.

摘要

在海洋工业的防污应用中,低表面能涂层需要利用湍流水来释放海洋生物污垢,但这对静态条件下的防污提出了重大挑战。传统的解决方案是添加环保型防污剂,但它存在耗尽的问题。因此,具有高研究价值的无防污剂低表面能弹性防污涂层应运而生。受鱿鱼柔软身体和表皮黏液的启发,本研究将稳定的聚乙烯吡咯烷酮(PVP)亲水链段引入到基于聚二甲基硅氧烷的聚氨酯(PDMS-PU)中,实现了低表面能弹性体涂层,其具有亲水防御表面和降低的弹性模量(<1.1 MPa)。在水相环境中,经修饰的表面暴露了足够的稳定亲水链段,从而表现出优异的防污性能,提高了对生物蛋白、细菌(抗菌率 95.24%)和藻类(覆盖率<3%)的抗吸附效果。该涂层在 150 天内表现出优异的海洋防污性能,为开发环保且可持续的无防污剂海洋防污应用解决方案提供了新动力。

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