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Stretchable Hydrophobic Surfaces and Self-Cleaning Applications

机译:可拉伸的疏水性表面和自清洁应用

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摘要

Hydrophobizing of stretchable elastomer surfaces is considered and the reversible behavior of the resulting surface wetting state is examined after stretching and relaxing the hydrophobized samples. The environmental dust are analyzed in terms of elemental constitutes and size, and the dust pinning on the hydrophobized surface is measured. The dust removal mechanisms, by the water droplets on the hydrophobized surface, are investigated. We demonstrated that deposition of functionalized nano-size silica units on the elastomer surface gives rise to hydrophobicity with 135° ± 3° contact angle and low hysteresis of 3° ± 1°. Stretching hydrophobized elastomer surface by 50% (length) reduces the contact angle to 122° ± 3° and enhances the hysteresis to 6° ± 1°. However, relaxing the stretched sample causes exchanging surface wetting state reversibly. Water droplet rolling and sliding can clean the dusty hydrophobized surface almost 95% (mass ratio of the dust particles removed). Droplet puddling causes striations like structures along the droplet path and close examination of the few residues of the dust reveals that the droplet takes away considerably large amount of dust from surface.
机译:考虑了可拉伸弹性体表面的疏水化,并在拉伸和松弛疏水化样品后检查了所得表面润湿状态的可逆行为。根据元素组成和大小分析环境粉尘,并测量钉在疏水化表面上的粉尘。研究了疏水化表面上的水滴的除尘机理。我们证明,在弹性体表面上沉积官能化的纳米级二氧化硅单元会产生疏水性,接触角为135°±3°,滞后性低至3°±1°。将疏水化的弹性体表面拉伸50%(长度)可将接触角减小至122°±3°,并将滞后现象提高至6°±1°。然而,松弛拉伸的样品导致可逆地交换表面润湿状态。水滴滚动和滑动可以清洁几乎95%的灰尘疏水表面(去除的灰尘颗粒的质量比)。液滴搅动会沿液滴路径产生类似结构的条纹,仔细检查灰尘残留物后会发现液滴从表面带走了大量灰尘。

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