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首页> 外文期刊>Advanced Functional Materials >A Novel Ultra-hydrophobic Surface: Statically Non-wetting but Dynamically Non-sliding
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A Novel Ultra-hydrophobic Surface: Statically Non-wetting but Dynamically Non-sliding

机译:一种新型的超疏水表面:静态不润湿但动态不滑动

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摘要

In this study, we report the fabrication of a novel surface with both morphology and composition heterogeneities by casting polymer blend solution. The resultant poly (methyl methacrylate) (PMMA) and amphiphilic polyurethane (A-PU) surface has a rough structure on microscale and separated hydrophobic and hydrophilic nanodomains as well. On this surface, water drop shows a static CA about 160° but the drop is pinned on the surface at any titled angles. This phenomenon can be ascribed to the special surface characters as the air trapped in the porous surface and hydrophobic domains repel the water, leading to a very high static CA, whereas the hydrophilic domains contacting with water at the interface, though being restrained to a little fraction by the surface roughness, adhere the drop. In addition, by adding the third component, hydrophobic fluorinated polyurethane, in the blend, the formed PMMA/A-PU/F-PU blend surfaces show CA about 160° but the SA be able to rationally tune from small to large by adjusting the ratio of A-PU to F-PU. Our method provides a novel approach for controlling surface morphology, composition and corresponding surface adhesion, and may find many applications in various fields.
机译:在这项研究中,我们报告了通过浇铸聚合物共混溶液来制造具有形态和成分异质性的新型表面。所得的聚(甲基丙烯酸甲酯)(PMMA)和两亲性聚氨酯(A-PU)表面在微观尺度上具有粗糙的结构,并且还分离了疏水性和亲水性纳米域。在此表面上,水滴显示出约160°的静态CA,但水滴以任何标题角度固定在表面上。这种现象可以归因于特殊的表面特性,因为空气被困在多孔表面中并且疏水域排斥水,从而导致非常高的静态CA,而亲水域在界面处与水接触,尽管被抑制得很少。分数由表面粗糙度,粘附滴。此外,通过在共混物中添加第三种成分疏水性氟化聚氨酯,所形成的PMMA / A-PU / F-PU共混物表面的CA约为160°,但通过调节SA可以合理地从小变大。 A-PU与F-PU之比。我们的方法提供了一种控制表面形态,成分和相应的表面附着力的新颖方法,并可能在各个领域中找到许多应用。

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