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两亲性两性离子型丙烯酸酯/甲基丙烯酸酯共聚物在海洋防污涂料中的应用。

Amphiphilic Zwitterionic Acrylate/Methacrylate Copolymers for Marine Fouling-Release Coatings.

机构信息

Analytical Chemistry-Biointerfaces, Ruhr University Bochum, Bochum, NRW 44780, Germany.

Center for Corrosion & Biofouling, Florida Institute of Technology, Melbourne, Florida 32901, United States.

出版信息

Langmuir. 2021 May 11;37(18):5591-5600. doi: 10.1021/acs.langmuir.1c00428. Epub 2021 Apr 30.

Abstract

Methacrylate and acrylate monomers are popular building blocks for antifouling (AF) and fouling-release (FR) coatings to counteract marine biofouling. They are used in various combinations and often combined into amphiphilic materials. This study investigated the FR properties of amphiphilic ethylene glycol dicyclopentenyl ether acrylate (DCPEA) and the corresponding methacrylate (DCPEMA) blended with 5 wt % zwitterionic carboxybetaine acrylate (CBA) and the corresponding methacrylate (CBMA). A series of (co)polymers with different acrylate/methacrylate compositions were synthesized and tested against the attachment of the diatom and in short-term dynamic field exposure experiments. The more hydrophobic methacrylate DCPEMA homopolymer outperformed its acrylate counterpart DCPEA. Incorporated zwitterionic functionality of both CBMA and CBA imparted ultralow fouling capability in the amphiphilic polymers toward diatom attachment, whereas in the real ocean environment, only the employment of CBMA reduced marine biofouling. Moreover, it was observed that CBA-containing coatings showed different surface morphologies and roughnesses compared to the CBMA analogues. Particularly, a high impact was found when acrylic CBA was mixed with methacrylic DCPEMA. While the wettability of the coatings was comparable, investigated methacrylates in general exhibited superior fouling resistance compared to the acrylates.

摘要

甲基丙烯酸酯和丙烯酸酯单体是用于防污(AF)和防污释放(FR)涂料的常用构建块,以对抗海洋生物附着。它们以各种组合使用,并且经常组合成两亲性材料。本研究研究了亲水性乙二醇二环戊烯基醚丙烯酸酯(DCPEA)和相应的甲基丙烯酸酯(DCPEMA)与 5wt%两性离子羧酸甜菜碱丙烯酸酯(CBA)和相应的甲基丙烯酸酯(CBMA)混合的 FR 性能。合成了一系列具有不同丙烯酸酯/甲基丙烯酸酯组成的(共)聚合物,并对其进行了测试,以抵抗硅藻的附着和短期动态现场暴露实验。更疏水的甲基丙烯酸酯 DCPEMA 均聚物的性能优于其丙烯酸酯对应物 DCPEA。两性离子官能团的引入使 CBMA 和 CBA 的亲水性聚合物具有超低的硅藻附着能力,而在真实的海洋环境中,只有使用 CBMA 才能减少海洋生物附着。此外,与 CBMA 类似物相比,发现含有 CBA 的涂层表现出不同的表面形貌和粗糙度。特别是当将含丙烯酸的 CBA 与含甲基丙烯酸的 DCPEMA 混合时,影响更大。虽然涂层的润湿性相当,但一般来说,研究的甲基丙烯酸酯比丙烯酸酯表现出更好的抗污性。

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