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首页> 外文期刊>Journal of Colloid and Interface Science >Preparation and synergistic antifouling effect of self-renewable coatings containing quaternary ammonium-functionalized SiO2 nanoparticles
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Preparation and synergistic antifouling effect of self-renewable coatings containing quaternary ammonium-functionalized SiO2 nanoparticles

机译:含有季铵官能化SiO2纳米粒子的自再生涂层的制备及协同防污效果

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Confronting the complexity of marine biofouling, no single ecofriendly technology has been reported for efficient anti-biofouling. Combination of multiple antifouling factors should be one of the strategies for strengthening the anti-biofouling performance. Here we synthesized quaternary ammonium modified SiO2 nanoparticles (QAS-SiO2) and incorporated them into self-polishing polymer (SP) to get the coatings combining self-renewal ability, micro-nano structured topography, and bactericidal function. The coatings acquired underwater superoleophobic surface after immersion in artificial seawater due to their micro-nano structured surface together with the hydrolyzed SP. In comparison with unmodified SiO2, QAS-SiO2 had better compatibility with SP and caused less increment of self-polishing rate. Synergistic antifouling effect was interestingly observed between self-renewal ability and bactericidal function in both the laboratory assay based on the adhesion of Shewanella loihicas and natural field trial. The micro-nano structured topography contributed to underwater superoleophobicity but did not exhibit its impact on antifouling performance. QAS-SiO2 can also slightly inhibit the adhesion of diatoms and reduce the settlement of plantigrades of the mussel. In addition, we also demonstrated the coatings with lower quantity of biofilm exhibited less settlement of plantigrades of mussel. (C) 2019 Elsevier Inc. All rights reserved.
机译:面对海洋生物污染的复杂性,没有报告单一的ECOFriendly技术,以获得高效的抗生物污垢。多次防污因子的组合应该是加强反生物污染性能的策略之一。在这里,我们合成季铵改性的SiO2纳米颗粒(Qas-SiO2)并将它们掺入自抛光聚合物(SP)中以使涂层组合自我更新能力,微纳米结构形貌和杀菌功能。涂层由于其微纳米结构表面与水解的SP浸入人造海水中,涂层在人造海水中获得了水下超级表面。与未修饰的SiO2相比,Qas-SiO2与SP具有更好的相容性,并导致自抛光速率的增量较少。基于Shewanella Loihicas粘附和自然田间试验的实验室测定,自我更新能力和杀菌功能之间有趣地观察到协同的防污效果。微纳米结构形貌导致水下超级性,但没有表现出对防污性能的影响。 Qas-SiO2还可以轻微抑制硅藻的粘附性并减少贻贝的血液沉降。此外,我们还证明了较少量的生物膜的涂层表现出较少沉降的贻贝。 (c)2019 Elsevier Inc.保留所有权利。

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