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Durable, superhydrophobic, superoleophobic and corrosion resistant coating on the stainless steel surface using a scalable method

机译:使用可扩展方法在不锈钢表面上形成耐用,超疏水,超疏油和耐腐蚀涂层

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In this study, superamphiphobic coating was produced using low surface energy materials and fabrication of hierarchical structures on stainless steel surface. Hierarchical structure was fabricated by silica multilayer coatings and adequate control of particles size in each layer. The surface energy was decreased by fluoropolymer compounds. The maximum static contact angle of DI water, ethylene glycol and fuel oil droplets on the prepared surface increased from 64° to 166°, from 33° to 157° and from 0° to 116°, respectively. Also, the minimum sliding angles of DI water, ethylene glycol and fuel oil droplets on the prepared surface were less than 2°, 5° and 12°, respectively. These results confirmed the superhydropho-bicity and superoleophobicity of coated surfaces. These films maintained their superamphiphobicity after 16 days of immersion in water. In electrochemical corrosion evaluation, the highest protection efficiency of fabricated films reached as high as 97.33%. These satisfied results confirmed that this simple method can be used to fabricate large scale samples.
机译:在这项研究中,超疏水涂层是使用低表面能材料和在不锈钢表面上制造分层结构制成的。通过二氧化硅多层涂层和适当控制每一层中的颗粒大小来制造分层结构。含氟聚合物化合物降低了表面能。在准备好的表面上,去离子水,乙二醇和燃料油滴的最大静态接触角分别从64°增加到166°,从33°增加到157°和从0°增加到116°。同样,去离子水,乙二醇和燃料油滴在准备好的表面上的最小滑动角分别小于2°,5°和12°。这些结果证实了涂层表面的超疏水性和超疏油性。这些薄膜在水中浸泡16天后仍保持超疏水性。在电化学腐蚀评估中,制成膜的最高保护效率高达97.33%。这些令人满意的结果证实了该简单方法可用于制造大规模样品。

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