Fabrication of Superhydrophobic CuO Coating on Steel by Electrodeposition Modified with Stearic Acid

S. R. Trisnanto, G. Sunnardianto, I. Setiawan
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引用次数: 3

Abstract

Environmental deterioration of carbon steel-made parts is a serious problem. Failure due to environment conditions such as corrosion costs industries immense amount of money. Regarding this issue, this research provided an approach in discovering a facile and environmentally-friendly technique to protect steel-made components. A superhydrophobic CuO coating had been successfully fabricate on lowcarbon steel substrate. The superhydrophobic CuO coating was fabricated by Cu electrodeposition combined with immersion in a mixture of NaOH and H2O2 solution, as well as stearic acid modification. The superhydrophobic CuO coating was reported having maximum contact angle up to 171.4o with relatively low contact angle hysteresis and sliding angle of 15.1o and 7.5o respectively. Therefore, it was considered to be outstanding water-repellent coating. The superhydrophobicity was obtained by roughening and depositing stearic acid modifier on the surface. In addition, superhydrophobic CuO coating prepared in this experiment exhibited exceptional anti-corrosion property. The corrosion rate of the steel substrate could be significantly reduced. It was found that corrosion rate of superhydrophobic CuO coating to be eight times slower than that of bare steel.
硬脂酸改性电沉积法制备钢表面超疏水氧化铜涂层
碳钢制造的零部件环境恶化是一个严重的问题。由于腐蚀等环境条件造成的故障会给工业造成巨大的损失。针对这一问题,本研究为发现一种简便环保的钢构件保护技术提供了途径。在低碳钢基体上成功制备了超疏水CuO涂层。采用电沉积、NaOH和H2O2混合浸泡、硬脂酸改性法制备超疏水CuO涂层。超疏水CuO涂层最大接触角为171.40°,接触角迟滞较低,滑动角为15.10°和7.5°。因此,它被认为是杰出的防水涂料。通过表面粗化和沉积硬脂酸改性剂获得了超疏水性。此外,本实验制备的超疏水CuO涂层具有优异的防腐性能。可以显著降低钢基体的腐蚀速率。结果表明,超疏水CuO涂层的腐蚀速度比裸钢慢8倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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