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Transparent and Superamphiphobic Surfaces from Mushroom-Like Micropillar Arrays

机译:来自蘑菇的微米阵列的透明和超人物表面

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摘要

Transparent, superamphiphobic surfaces that repel both water and oils are prepared from mushroom-like micropillar arrays consisting of nanoparticles only at the top of the pillars by controlled compartment filling of silica nanoparticles into the bottom of the poly(dimethylsiloxane) (PDMS) mold, followed by infiltration of epoxy and UV curing. Because silica nanoparticle decorated pillar heads are more resistant to O2 plasma than the polymer pillars, we can precisely control the head size of micropillars and nanoroughness on top of the pillar heads by varying the O2 plasma time. The combination of nanoroughness and mushroom-like micropillars leads to superhydrophobicity and oil repellency to different organic solvents. High transparency is achieved by increasing the spacing ratio of micropillars. Last, we demonstrate anisotropic wetting on the hierarchical surface can be achieved by combining photolithography, replica molding, and self-assembly techniques.
机译:透明的超人物表面从蘑菇状微米的阵列中释放出水和油,由纳米颗粒在柱的顶部组成的纳米颗粒,通过控制池纳米粒子的控制室填充到聚(二甲基硅氧烷)(PDMS)模具的底部,然后进行 通过渗透环氧和紫外线固化。 由于硅纳米粒子装饰的柱头比聚合物柱更耐柱子,所以通过改变O2等离子体时间,我们可以精确地控制柱头顶部的微米和纳米应电的头部尺寸。 纳米或蘑菇状微米的组合导致不同的有机溶剂的超疏水性和防油性。 通过增加微米的间距比来实现高透明度。 最后,通过组合光刻,复制品成型和自组装技术,我们证明了层次表面上的各向异性润湿。

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