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Enhancing corrosion and biofouling resistance through superhydrophobic surface modification

机译:通过超疏水表面改性提高耐腐蚀性和生物污垢性

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摘要

A simple approach was developed for generating superhydrophobic surface modification of titanium and 9Cr-1Mo steel. Motivated by the lotus effect in which water droplets falling on the leaves bead up and roll off, anodization as well as etching followed by dip coating in myristic acid was attempted to create superhydrophobic surfaces. However, the water contact angle on titanium was found to be 148 degrees +/- 4 degrees, whereas in the case of 9Cr-1Mo steel, it was 107 degrees +/- 2 degrees. A detailed description of the surface-modified superhydrophobic titanium and hydrophobic 9Cr-1Mo steel is presented in this article. The corrosion performance and anti-biofouling properties are ascertained using electrochemical impedance spectroscopy and epifluorescence microscopy. The present study revealed enhanced corrosion resistance and antibiofouling of the materials after superhydrophobic surface modification.
机译:开发了一种简单的方法来产生钛和9Cr-1Mo钢的超疏水表面改性。受荷叶效应的影响,其中落在叶子上的水滴会珠起并滚落,尝试进行阳极氧化以及蚀刻,然后在肉豆蔻酸中浸涂以创建超疏水表面。然而,发现与钛的水接触角为148度+/- 4度,而在9Cr-1Mo钢的情况下,为107度+/- 2度。本文对表面改性的超疏水钛和疏水9Cr-1Mo钢进行了详细说明。使用电化学阻抗谱和落射荧光显微镜确定腐蚀性能和抗生物结垢性能。本研究揭示了超疏水表面改性后材料的增强的耐腐蚀性和抗生物结垢性。

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