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首页> 外文期刊>Applied Surface Science >Dual-scale artificial lotus leaf fabricated by fully nonlithographic simple approach based on sandblasting and anodic aluminum oxidation techniques
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Dual-scale artificial lotus leaf fabricated by fully nonlithographic simple approach based on sandblasting and anodic aluminum oxidation techniques

机译:基于喷砂和阳极铝氧化技术的完全非光刻简单方法制造的双尺度人工荷叶

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摘要

This paper reports a microano dual-scaled artificial lotus leaf that is formed on a silicon substrate by simple and inexpensive fully nonlithographic approach, combining a sandblasting technique and an anodic aluminum oxidation (AAO) process. The proposed dual-scaled surface was demonstrated by covering the sandblasted micro-roughened substrate entirely with nano-scale protuberances, and its surface wettability was characterized by measuring the static contact angle (SCA) and contact angle hysteresis (CAH). The measurements confirmed that the proposed dual-scaled surface can sufficiently ensure superhydrophobicity in the Cassie wetting regime with a high SCA of 159.4 ±0.5° and a low CAH of 3.9 ±0.7°, and the surface wetting properties can be improved greatly compared to those of flat, sandblasted micro-roughened and nano-scale protuberance-arrayed surfaces. Through a dropping test, it was observed that the fabricated dual-scaled surface can ensure its superior water-repellency with various levels of the impact velocity. Finally, a self-cleaning ability of the proposed dual-roughened surface was verified experimentally by observing the dynamic rolling-off behavior of the water droplet on the surface covered with contaminants.
机译:本文报道了一种微/纳米双比例人工荷叶,它通过简单且廉价的完全非光刻方法结合喷砂技术和阳极铝氧化(AAO)工艺形成在硅基板上。拟议的双尺度表面通过用纳米尺度的突起完全覆盖喷砂微粗糙化基材而得到证明,并且其表面润湿性通过测量静态接触角(SCA)和接触角滞后(CAH)来表征。测量结果证实,所提出的双尺度表面可以在Cassie润湿方式中充分确保超疏水性,其SCA值为159.4±0.5°,CAH值为3.9±0.7°,与之相比,其表面润湿性可以大大改善。平整,喷砂微粗糙化和纳米级突起排列的表面。通过跌落试验,观察到所制造的双比例表面可以在各种水平的冲击速度下确保其优异的防水性。最后,通过观察水滴在沾满污染物的表面上的动态滚动行为,通过实验验证了所提出的双粗糙表面的自清洁能力。

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