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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A simple and scalable approach towards the preparation of superhydrophobic surfaces -importance of the surface roughness skewness
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A simple and scalable approach towards the preparation of superhydrophobic surfaces -importance of the surface roughness skewness

机译:一种简单且可扩展的制备超疏水表面的方法-表面粗糙度偏度的重要性

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A simple and easily up-scalable approach towards the preparation of fluorine-free superhydrophobic surfaces is proposed. Surfaces with water contact angle (WCA) as high as 170° and contact angle hysteresis (CAH) down to 5° are obtained on industrial metallic foils (cold-rolled aluminium foils and electrodeposited copper foils) coated thanks to an atmospheric pressure plasma-enhanced chemical vapour deposition method. Nano- and micro-scale roughness characterisation of the surface, performed by atomic force microscopy (AFM) and confocal microscopy, provided evidence for the substrate surface skewness as the major parameter influencing the WCA for identical nano-rough plasma-polymerised PDMS coatings. A symmetric height distribution, Rsk~m = 0, is shown to be more desirable to achieve superhydrophobic surfaces.
机译:提出了一种简单且易于升级的方法来制备无氟超疏水表面。在大气压等离子体增强下涂覆的工业金属箔(冷轧铝箔和电沉积铜箔)上获得的水接触角(WCA)高达170°,接触角滞后(CAH)低至5°化学气相沉积法。通过原子力显微镜(AFM)和共聚焦显微镜进行的表面纳米级和微米级粗糙度表征,为基材表面偏斜度提供了证据,而偏斜度是影响相同纳米级等离子聚合PDMS涂层WCA的主要参数。对称高度分布Rsk_m = 0被证明是实现超疏水表面的理想选择。

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