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首页> 外文期刊>Journal of nanotechnology >Improving the Hydrophobicity of ZnO by PTFE Incorporation
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Improving the Hydrophobicity of ZnO by PTFE Incorporation

机译:PTFE引入改善ZnO的疏水性

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The objective of the present study is to obtain a zinc oxide- (ZnO-) based superhydrophobic surface in a simple and cost-effective manner. Chemical immersion deposition being simple and economical has been adopted to develop modified ZnO coating on glass substrate. Several modifications of ZnO like treatment with alkanoic acid (stearic acid) and fluoroalkylsilane to tune the surface wettability (hydrophobicity) were attempted. The effect of thermal treatment on the hydrophobic performance was also studied. It was observed that thermal treatment at 70°C for 16 hrs followed by immersion in stearic acid resulted in high water contact angle (WCA), that is, a superhydrophobic surface. Thus, a modified ZnO superhydrophobic surface involves the consumption of large amount of electrical energy and time. Hence, the alternate involved the incorporation of low surface energy fluoropolymer polytetrafluoroethylene (PTFE) in the ZnO coating. The immersion deposited ZnO-PTFE composite coating on modification with either stearic acid or fluoroalkylsilane resulted in a better superhydrophobic surface. The coatings were characterized using Scanning Electron Microscope (SEM) for the surface morphology. It was found that microstructure of the coating was influenced by the additives employed. A flower-like morphology comprising of needle-like structure arranged in a radial manner was exhibited by the superhydrophobic coating.
机译:本研究的目的是以简单且成本有效的方式获得基于氧化锌(ZnO-)的超疏水表面。已经采用简单且经济的化学浸没沉积来在玻璃基板上开发改性的ZnO涂层。尝试了用链烷酸(硬脂酸)和氟代烷基硅烷对ZnO进行类似处理的方法,以调节表面的润湿性(疏水性)。还研究了热处理对疏水性能的影响。据观察,在70°C的温度下进行16小时的热处理,然后将其浸入硬脂酸中会导致较高的水接触角(WCA),即超疏水表面。因此,改性的ZnO超疏水表面涉及大量电能和时间的消耗。因此,替代方案涉及在ZnO涂层中掺入低表面能的含氟聚合物聚四氟乙烯(PTFE)。用硬脂酸或氟代烷基硅烷改性的浸涂沉积ZnO-PTFE复合涂层产生了更好的超疏水表面。使用扫描电子显微镜(SEM)表征涂层的表面形态。发现涂层的微观结构受所用添加剂的影响。该超疏水涂层表现出包括以放射状排列的针状结构的花状形态。

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