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首页> 外文期刊>RSC Advances >Fabrication of ZnO nanoarchitectured fluorine-free robust superhydrophobic and UV shielding polyester fabrics for umbrella canopies
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Fabrication of ZnO nanoarchitectured fluorine-free robust superhydrophobic and UV shielding polyester fabrics for umbrella canopies

机译:用于伞形檐篷的ZnO纳米建筑无氟无氟过羟氢虫草和紫外线屏蔽涤纶织物的制造

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摘要

Mechanically robust, durable, fluorine-free superhydrophobic and UV shielding surfaces are fabricated on polyester umbrella canopy fabrics by self-assembly of stearic acid on zinc oxide (ZnO) nanoarchitectures on polyester fabrics. Drawbacks of conventional umbrella canopies including rain water penetration through the canopy during heavy rains, wet canopies taking too long to dry, and limited blockage of harmful UV radiation have been overcome with the surface modified canopy fabrics in the present study. Herein, in the typical synthesis, the polyester fabric is dipped in Zn(NO3)(2):hexamethylenetetraamine (HMT), at 1:1 molar ratio solution and heated at 100 degrees C for 2 h to grow ZnO nanoarchitectures on the fabric surface. Stearic acid is allowed to self-assemble by dipping the fabric in 1 g dm(-3) stearic acid solution. The modified fabrics are characterized using scanning electron microscopy coupled with energy dispersive X-ray spectroscopy, Fourier transform infrared spectroscopy, thermogravimetric analysis and X-ray fluorescence spectroscopic techniques. The modified fabrics show superhydrophobicity characterized by water contact angles over 150 degrees with the optimum analyzed conditions. The superhydrophobic layer formed on the fabric is resistant to acid rain and stayed durable throughout 50 abrasion cycles and under 1.5 h strong surfactant washing. The developed method is useful to fabricate a smart umbrella canopy with acid rain resistant, durable, robust superhydrophobic and UV blocking properties.
机译:机械坚固的,耐用的,无氟的超疏水性和紫外线屏蔽表面通过自组装上在聚酯织物上的氧化锌(ZnO)nanoarchitectures硬脂酸制造在聚酯伞身的织物。在大雨常规伞篷包括通过篷雨水渗透的缺点,湿式檐时间太长干燥,和有害的紫外线辐射有限堵塞已经克服了表面改性的天篷织物在本研究中。这里,在典型的合成中,聚酯织物在锌(NO3)(2)浸渍:六亚甲基四胺(HMT),以1:1摩尔比的溶液中并加热,在100℃下2小时,在织物表面上生长的ZnO nanoarchitectures 。硬脂酸允许通过中和1g DM(-3)硬脂酸溶液中浸渍该织物自组装。修改后的织物用加上能量色散X射线光谱仪扫描电子显微镜,其特征在于,傅里叶变换红外光谱法,热重分析和技术的X射线荧光光谱。修改后的织物显示超疏水性,其特征在于水的接触角超过150度的最佳条件进行分析。形成在织物上的超疏水层是酸雨抗性和整个50个磨损周期和下1.5小时强的表面活性剂的洗涤住耐用。所开发的方法是制造具有酸雨性,耐用,鲁棒超疏水和UV阻挡性能的智​​能伞身有用。

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  • 来源
    《RSC Advances》 |2018年第55期|共8页
  • 作者单位

    SLINTEC Acad Acad Sri Lanka Inst Nanotechnol Nanotechnol &

    Sci Pk Pitipana Homagama Sri Lanka;

    Sri Lanka Inst Nanotechnol SLINTEC Nanotechnol &

    Sci Pk Pitipana Homagama Sri Lanka;

    Univ Peradeniya Postgrad Inst Sci PGIS Peradeniya Sri Lanka;

    Univ Peradeniya Postgrad Inst Sci PGIS Peradeniya Sri Lanka;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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