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Design of an outstanding super-hydrophobic surface by electro-spinning

机译:通过电纺设计出色的超疏水表面

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A duel-layer super-hydrophobic surface, comprising polyvinylidene fluoride (PVDF) and fluorinated silane molecules (FSM), was engineered using electro-spinning a coating onto the glass. Scanning electron microscopy was used to confirm that, by reducing the percentage of PVDF in the spraying solution, the aspect ratio of the nano-beads could be changed and a sharp bead profile obtained. Energy dispersive spec-troscopy was employed to ensure the maximum amount of FSM was present on the surface, which assists in achieving a high Water Contact Angle. Using a two-step process, involving PVDF and FSM, nano-beads, with high aspect ratio, were formed on a rough surface which produced a super-hydrophobic surface with a Water Contact Angle of 170.2° and a very low Water Roll-off Angle (<1 °). Such a coating facilitates the speedy run-off of water drops from a surface and has many potential applications in buildings and other areas.
机译:通过将涂层静电纺丝到玻璃上,设计了包含聚偏二氟乙烯(PVDF)和氟化硅烷分子(FSM)的二层超疏水表面。使用扫描电子显微镜确认,通过减少喷涂溶液中PVDF的百分比,可以改变纳米珠的长径比,并获得清晰的珠轮廓。采用能量色散光谱法确保表面上存在最大量的FSM,这有助于实现高水接触角。使用涉及PVDF和FSM的两步过程,在粗糙表面上形成了具有高长宽比的纳米珠,该纳米珠产生了超疏水表面,其水接触角为170.2°,并且水滑落非常低角度(<1°)。这样的涂层有助于水滴从表面快速流出,并且在建筑物和其他区域具有许多潜在的应用。

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