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Engineering nanoscale roughness on hydrophobic surface—preliminary assessment of fouling behaviour

机译:在疏水性表面上工程纳米级粗糙度—污垢行为的初步评估

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A preliminary investigation of the fouling behaviour of smooth and roughened superhydrophobic coatings is reported. The effect of nanoscale interfacial roughness on the adhesion of single (SW8) and mixed cultures of micro-foulant for periods of up to 6 months was assessed using visual and wettability measurements. Detailed analysis indicated virtually no micro-organism attached to the superhydrophobic surfaces in the first weeks of immersion. As a result by comparison with smooth substrates, which exhibited fouling within a day, very rough (roughness ratio > 2.7) surfaces exhibited high resistance to fouling over a 6-month period. However, after periods exceeding 2 months under ocean conditions, both films showed limited anti-fouling properties. There appears to be a correlation between the nature of the nanoscale roughness in the creation of superhydrophobic coatings and their potential anti-fouling properties. The future architecture of such a correlation is investigated.
机译:据报道,对光滑和粗糙的超疏水性涂料的结垢行为进行了初步研究。使用目测和润湿性测量评估了纳米级界面粗糙度对单个(SW8)和微污垢混合培养物长达6个月的粘附力的影响。详细的分析表明,在浸入的最初几周中,几乎没有微生物附着在超疏水表面上。通过与在一天之内出现结垢的光滑基材进行比较的结果,非常粗糙(粗糙度比> 2.7)的表面在6个月的时间内表现出很高的抗结垢性。然而,在海洋条件下超过2个月的时间后,这两款膜均显示出有限的防污性能。在超疏水涂层的产生中纳米级粗糙度的性质与其潜在的防污性质之间似乎存在相关性。研究了这种相关性的未来架构。

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