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首页> 外文期刊>ACS Omega >Fabrication of Impact-Resistant and Wear-Recoverable Superhydrophobic Surfaces
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Fabrication of Impact-Resistant and Wear-Recoverable Superhydrophobic Surfaces

机译:耐冲击和可磨损恢复的超疏水表面的制备

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Robustness of superhydrophobic materials has been gradually taken into consideration for practical applications; however, little attention has been paid to the impact resistance of the superhydrophobicity of the materials. The present study demonstrated a new route for improving the mechanical durability, especially the impact resistance, of the superhydrophobic materials. First, poly(styrene-co-butadiene)/poly(ethylene-vinyl acetate) (SBR/EVA) composite monoliths with microscale cellular structures were manufactured by vulcanization-foaming processes. Then the composite monoliths were treated with sandpaper to create nanostructures above the revealed micropores after removing the uppermost skin, forming microanotextured surfaces and giving improvements in superhydrophobicity. Due to the elastomeric nature of SBR and EVA, the superhydrophobicity of the monoliths can be maintained even while the material is mechanically impacted or compressed, and wearing helps improvement or recovery of the superhydrophobicity because of the self-similarity of the cellular structure inside the monoliths. Additionally, the obtained superhydrophobic materials are resistant to acidic, alkali, and salt liquors as well as organic solvents and have easy healing capacity of superhydrophobicity with a simple sanding treatment when destroyed by exposure to oxygen plasma.
机译:在实际应用中已经逐渐考虑了超疏水材料的坚固性。然而,很少关注材料的超疏水性的​​耐冲击性。本研究表明了一种改善超疏水材料的机械耐久性,特别是抗冲击性的新途径。首先,通过硫化发泡工艺制备了具有微孔结构的聚(苯乙烯-共-丁二烯)/聚(乙烯-乙酸乙烯酯)(SBR / EVA)复合整体材料。然后,在去除最上面的皮肤后,用砂纸处理复合整料以在露出的微孔上方创建纳米结构,形成微/纳米纹理表面并改善超疏水性。由于SBR和EVA的弹性性质,即使材料受到机械冲击或压缩,也可以保持整体材料的超疏水性,并且由于整体材料内部的细胞结构具有自相似性,因此磨损有助于改善或恢复超疏水性。 。另外,所获得的超疏水材料对酸性,碱和盐溶液以及有机溶剂具有抵抗力,并且当通过暴露于氧等离子体而被破坏时具有通过简单的砂磨处理而易于修复的超疏水性。

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