Fabrication of biomimetic superhydrophobic surfaces through a one step solution-immersion process on galvanized iron substrates

Chih-Feng Wang, Li-Zhen Huang, Liang-Ting Chen, Sheng-Yi Yang, C. Shih
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Abstract

In this study, we used a simple one-step solution-immersion process to rapidly synthesize superhydrophobic Cu coatings on galvanized iron substrates. Scanning electron microscope (SEM), and water contact angle measurements have been performed to characterize the morphological features, chemical composition and superhydrophobicity of the surfaces. The resulting surfaces provided a water contact angle as high as 164° and a sliding as low as 3°. The as prepared superhydrophobic surfaces maintained their superhydrophobicity after pressing. Furthermore, the superhydrophobic Cu coatings on galvanized iron substrates had excellent stability in terms of the contact angle with water after both heating and organic solvent treatment.
用一步溶液浸没法在镀锌铁基板上制备仿生超疏水表面
在这项研究中,我们采用简单的一步溶液浸泡工艺在镀锌铁基体上快速合成了超疏水铜涂层。通过扫描电子显微镜(SEM)和水接触角测量来表征表面的形态特征、化学成分和超疏水性。由此产生的表面提供了高达164°的水接触角和低至3°的滑动。所制备的超疏水表面在压制后仍保持其超疏水性。此外,镀锌铁基体上的超疏水Cu涂层在加热和有机溶剂处理后与水的接触角方面具有优异的稳定性。
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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