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The anti-biofouling effect against barnacles of a super-hydrophobic and high-oleophobic surface of treated aluminum

机译:处理过的铝的超疏水和高疏油表面对藤壶的抗生物污垢作用

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The effect of the low apparent solid surface energy of a specially engineered substrate on the settlement of barnacles was studied. To obtain an aluminum (Al) plate with low apparent solid surface energy, a plate was roughened by sandblasting and electrolytic chemical etching, and then coated with a chemically adsorbed monolayer (CAM) containing a fluorocarbon group. The plate was characterized by means of fluid contact angle measurements and a barnacle settlement test. The water contact angle (WCA) was 152°, and the oil contact angle of n -hexadecane (OCA) was 121°. The surface of the plate thus displayed super-hydrophobicity and high-oleophobicity. In addition, the wettability of this surface was evaluated, in terms of calculated apparent total solid surface energy, as approximately 1.6 mN/m. In laboratory experiments, barnacles did not settle on the plate when exposed for 7 days. In comparison to controls using a variety of untreated and partially treated plates, this indicates that the surface treated to have low apparent solid surface energy can have an anti-biofouling effect, which may be explained by a combination of effects of relief and material.
机译:研究了特殊设计的基质的低表观固体表面能对藤壶沉降的影响。为了获得具有低表观固体表面能的铝(Al)板,通过喷砂和电解化学蚀刻使板粗糙化,然后用包含碳氟化合物的化学吸附单层(CAM)涂覆。该板通过流体接触角测量和藤壶沉降试验来表征。水接触角(WCA)为152°,而正十六烷(OCA)的油接触角为121°。板的表面因此显示出超疏水性和高疏油性。另外,根据计算的表观总固体表面能,该表面的润湿性被评估为约1.6mN / m。在实验室实验中,暴露7天后,藤壶没有沉降在板上。与使用各种未处理和部分处理的板的对照相比,这表明处理后的表观固体表面能较低的表面具有抗生物结垢的作用,这可以通过浮雕和材料作用的组合来解释。

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