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Nonfreezable Water and Polymer Swelling Control the Marine Antifouling Performance of Polymers with Limited Hydrophilic Content

机译:非偏离水和聚合物溶胀控制具有有限亲水含量的聚合物的海洋防污性能

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Zwitterionic chemical groups have well-documented resistance to marine fouling species when presented as homogeneous polymer brushes. These model formulations are not, however, suitable for practical fouling-control applications. It is presently unknown if a uniform film of zwitterions is required to elicit nonfouling character via the binding of interfacial water or if the incorporation of zwitterionic functionality into a more practical bulk polymer system will suffice. Here, copolymers of n-butyl methacrylate were synthesized with low incorporation levels (up to 20 mol %) of hydrophilic functionality, including zwitterionic moieties. Their antifouling (AF) properties were evaluated using barnacle cyprids (Balanus improvisus), diatom cells (Navicula incerta), and a multispecies biofilm. The laboratory assays revealed higher resistance of ionic copolymers toward cyprid settlement, which was attributed to their swelling and the presence of nonfreezable water molecules bound tightly to the polymer chains. Additionally, cells of N. incerta and the multispecies biofilm were removed more effectively on polymers containing sulfobetaine methacrylate and sulfopropyl methacrylate moieties. The results indicate that the presence of tightly bound interfacial water is not limited to model systems of pure hydrophilic homopolymers, but that this mechanism can also reduce the settlement and adhesion of fouling species via bulk copolymer systems with limited hydrophilic content. The swelling of polymers with hydrophilic content may also contribute to their AF efficacy, and such materials may therefore represent a route to translation of the well-documented nonfouling character of zwitterions into practical, industrially relevant coating formulations.
机译:当呈现为均相聚合物刷时,两性离子化学基团对海洋污垢物种具有良好的抗性。然而,这些模型配方不是适用于实际污垢控制应用。目前未知,如果需要通过界面水的结合引发非滤膜,或者如果将两性离子官能团掺入更实用的散装聚合物系统的情况下,则需要均匀的两薄膜。这里,用低掺入水平(高达20摩尔%)的亲水性官能团合成甲基丙烯酸叔丁酯的共聚物,包括两性离子部分。使用钻石cyprids(Balanus Inflicisus),硅藻(Navicula Incerta)和MultiSpecies生物膜来评估它们的防污(AF)性质。实验室测定揭示了离子共聚物对Cyprid沉降的较高抗性,其归因于它们的溶胀和存在紧密粘合到聚合物链中的非偏充水分子的存在。另外,在含磺基丙酮和巯基甲基丙烯酸亚甲酸磺基酯部分的聚合物上更有效地除去N.Cherta和MultiSpecies生物膜的细胞。结果表明,紧密结合的界面水的存在不限于纯亲水均聚物的模型系统,但是该机制还可以通过具有有限的亲水含量的批量共聚物系统降低结垢物种的沉降和粘附。具有亲水含量的聚合物的溶胀也可能有助于其AF功效,因此这些材料可以代表两次文献良好的非滤光性特性转化为实际,工业上相关的涂料制剂的途径。

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