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One Step In Situ Loading of CuS Nanoflowers on Anatase TiO 2/Polyvinylidene Fluoride Fibers and Their Enhanced Photocatalytic and Self-Cleaning Performance

机译:一步法将CuS纳米花原位负载在锐钛矿型TiO 2 /聚偏二氟乙烯纤维上及其增强的光催化和自清洁性能

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CuS nanoflowers were loaded on anatase TiO~(2)/polyvinylidene fluoride (PVDF) fibers by hydrothermal treated electrospun tetrabutyl orthotitanate (TBOT)/PVDF fibers at low temperature. The results indicated that the amount of copper source and sulfur source determined the crystallization and morphology of the resultant products. It was found that the composite of CuS narrowed the band gap energy of TiO~(2)and enhanced the separation efficiency of the photogenerated electron-hole pairs of TiO~(2). The photocatalytic reaction rate of CuS/TiO~(2)/PVDF fibers to rhodamine B was 3 times higher than that of TiO~(2)/PVDF fibers under visible light irradiation. Besides, owing to the preparation process was carried out at low temperature, the flexibility of CuS/TiO~(2)/PVDF fibers was ensured. In addition, the self-cleaning performance of the dye droplets on the resultant product surface was demonstrated under visible light. Meanwhile, the resultant product can automatically remove dust on the surface of the material under the rolling condition of droplets due to its hydrophobicity. Therefore, the as-prepared CuS/TiO~(2)/PVDF fibers can not only degrade the contaminated compounds, but also depress the maintenance cost owing to its self-cleaning performance, which means a very practical application prospect.
机译:通过在低温下对水处理的原钛酸四丁酯(TBOT)/ PVDF纤维进行水热处理,将CuS纳米花负载在锐钛矿型TiO〜(2)/聚偏二氟乙烯(PVDF)纤维上。结果表明,铜源和硫源的量决定了所得产物的结晶和形态。研究发现,CuS的复合物使TiO〜(2)的带隙能变窄,并提高了TiO〜(2)的光生电子-空穴对的分离效率。在可见光下,CuS / TiO〜(2)/ PVDF纤维对罗丹明B的光催化反应速率比TiO〜(2)/ PVDF纤维高3倍。此外,由于在低温下进行制备过程,保证了CuS / TiO〜(2)/ PVDF纤维的柔韧性。另外,在可见光下证明了所得产品表面上的染料滴的自清洁性能。同时,由于其疏水性,所得产品可以在液滴滚动条件下自动去除材料表面上的灰尘。因此,所制得的CuS / TiO〜(2)/ PVDF纤维不仅具有降解性能,而且具有自清洁性能,降低了维护成本,具有非常实用的应用前景。

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