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Charged hydrophilic polymer brushes and their relevance for understanding marine biofouling

机译:带电的亲水性聚合物刷及其与理解海洋生物污损的相关性

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The resistance of charged polymers to biofouling was investigated by subjecting cationic (PDMAEMA), anionic (PSPMA), neutral (PHEMA-co-PEG 10 MA), and zwitterionic (PSBMA) brushes to assays testing protein adsorption; attachment of the marine bacterium Cobetia marina; settlement and adhesion strength of zoospores of the green alga Ulva linza; settlement of barnacle (Balanus amphitrite and B. improvisus) cypris larvae; and field immersion tests. Several results go beyond the expected dependence on direct electrostatic attraction; PSPMA showed good resistance towards attachment of C. marina, low settlement and adhesion of U. linza zoospores, and significantly lower biofouling than on PHEMA-co-PEG 10 MA or PSBMA after a field test for one week. PDMAEMA showed potential as a contact-active anti-algal coating due to its capacity to damage attached spores. However, after field testing for eight weeks, there were no significant differences in biofouling coverage among the surfaces. While charged polymers are unsuitable as antifouling coatings in the natural environment, they provide valuable insights into fouling processes, and are relevant for studies due to charging of nominally neutral surfaces.
机译:通过对阳离子(PDMAEMA),阴离子(PSPMA),中性(PHEMA-co-PEG 10 MA)和两性离子(PSBMA)刷子进行测试来测试蛋白质吸附,研究了带电聚合物的抗生物结垢性。海洋细菌Cobetia marina的附着;绿藻Ulva linza游动孢子的沉降和粘附强度;藤壶幼虫的藤壶(Balanus amphitrite和B. improvisus)的定居;和现场浸没测试。一些结果超出了对直接静电引力的预期依赖。在一周的田间试验后,PSPMA对PH.-co-PEG 10 MA或PSBMA的滨海假单胞菌附着力,U。linza游动孢子的附着力和附着力均表现出良好的抵抗力,生物污损显着降低。由于PDMAEMA具有破坏附着孢子的能力,因此它具有潜在的接触活性抗藻涂层的作用。但是,经过八周的现场测试,表面之间的生物污垢覆盖率没有显着差异。尽管带电荷的聚合物不适合在自然环境中用作防污涂料,但它们为污垢过程提供了宝贵的见识,并且由于名义上为中性表面带电,因此与研究相关。

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