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An environmentally-friendly method to fabricate extreme wettability patterns on metal substrates with good time stability

机译:一种在环境上具有良好时间稳定性的,在金属基材上制造极端润湿性图案的环保方法

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摘要

Wettability patterns have significant application potential in liquid transportation and water collection. Plasma hydrophilization is high-efficient and less-destructive, and has been widely used for preparing wettability patterns. However, the plasma-treated surfaces tend to recover to its original wettability, causing invalidation of the patterns. As a green treatment method, boiled water treatment could construct nanostructures, which is favorable for hydrophilicity-retaining; while the hydrophilization effect of plasma treatment would promote the reaction. Therefore, it should be possible to combine plasma and boiled water treatments to prepare long-lasting wettability patterns. In this paper, superhydrophobic aluminum surfaces were modified by plasma jet followed by boiled water treatment. The time stability, microstructures and chemical compositions of the treated surfaces were investigated by testing contact angles, scanning electron microscope, X-ray diffractometer, and X-ray photoelectron spectroscopy. The surfaces treated by plasma jet and boiled water could retain super-hydrophilicity for a long time under various storage conditions, including normal ambient, high temperature or high humidity. On the basis of this technique, long-lasting patterns could be prepared on different metal substrates. The green method proposed is expected to have promising application potential in fabricating wettability patterns and lab-on-chip devices, especially for those used in severe conditions.
机译:润湿性模式在液体运输和集水方面具有重要的应用潜力。等离子体亲水化是高效且破坏性较小的,已被广泛用于制备润湿性图案。然而,经等离子体处理的表面趋于恢复至其原始的润湿性,从而导致图案失效。作为绿色处理方法,开水处理可以构建纳米结构,有利于保持亲水性。而等离子处理的亲水作用将促进反应。因此,应该有可能将等离子处理和开水处理结合起来以制备持久的润湿性图案。在本文中,超疏水铝表面通过等离子流改性,然后进行开水处理。通过测试接触角,扫描电子显微镜,X射线衍射仪和X射线光电子能谱研究了处理过的表面的时间稳定性,微观结构和化学成分。用等离子流和开水处理过的表面在各种存储条件下(包括正常的环境,高温或高湿度)可以长时间保持超亲水性。基于该技术,可以在不同的金属基板上制备持久的图案。预期所提出的绿色方法在制造可湿性图案和芯片实验室设备方面具有广阔的应用潜力,特别是在恶劣条件下使用的方法。

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