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首页> 外文期刊>Journal of nanoscience and nanotechnology >Influence of Polyelectrolyte Multilayer Coating on the Degree and Type of Biofouling in Freshwater Environment
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Influence of Polyelectrolyte Multilayer Coating on the Degree and Type of Biofouling in Freshwater Environment

机译:淡水环境中聚电解质多层涂层对生物污损程度和类型的影响

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摘要

Biofouling is one of the biggest problems of water-borne systems. Since not only marine but also freshwater-based structures are affected, the biofouling in this environment is studied. The focus of this study lies on the antifouling properties of novel coating materials like polyelectrolyte multi-layers (PEM) compared with currently used silicon rubber (PDMS) based fouling release coatings. The following article contains the results of a systematical screening of the mechanical, surface charge and surface nano-heterogeneous properties of the investigated PEM and PDMS systems. The results show that negatively charged non crosslinked and crosslinked PEM coated PDMS can surpass current PDMS based fouling release coatings. The PEM films are not only able to reduce the biofouling, but are additionally able to control the type of settled bacteria (gram positive or negative). The negative terminated surfaces inhibit the settlement of gram positive bacteria, whereby the positive terminated surfaces inhibit the settlement of gram negative bacteria.
机译:生物污损是水性系统的最大问题之一。由于不仅会影响海洋结构,还会影响基于淡水的结构,因此需要研究这种环境下的生物污染。这项研究的重点在于与目前使用的基于硅橡胶(PDMS)的污垢脱模涂料相比,新型涂料如聚电解质多层(PEM)的防污性能。以下文章包含对所研究的PEM和PDMS系统的机械,表面电荷和表面纳米异质性进行系统筛选的结果。结果表明,带负电荷的未交联和交联的PEM涂层的PDMS可以超过当前基于PDMS的结垢释放涂层。 PEM膜不仅能够减少生物污染,而且还能够控制沉降细菌的类型(革兰氏阳性或阴性)。负末端的表面抑制革兰氏阳性细菌的沉降,而正末端的表面抑制革兰氏阴性细菌的沉降。

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