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One-Step Low Temperature Hydrothermal Synthesis of Flexible TiO2/PVDF@MoS2 Core-Shell Heterostructured Fibers for Visible-Light-Driven Photocatalysis and Self-Cleaning

机译:可见光驱动光催化和自清洁的一步法低温水热合成柔性TiO2 / PVDF @ MoS2核壳杂化纤维

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摘要

Novel flexible and recyclable core-shell heterostructured fibers based on cauliflower-like MoS2 and TiO2/PVDF fibers have been designed through one-step hydrothermal treatment based on electrospun tetrabutyl orthotitanate (TBOT)/PVDF fibers. The low hydrothermal temperature avoids the high temperature process and keeps the flexibility of the as-synthesized materials. The formation mechanism of the resultant product is discussed in detail. The composite of MoS2 not only expands the light harvesting window to include visible light, but also increases the separation efficiency of photo-generated electrons and holes. The as-prepared product has proven to possess excellent and stable photocatalytic activity in the degradation of Rhodamine B and levofloxacin hydrochloride under visible light irradiation. In addition, the TiO2/PVDF@MoS2 core-shell heterostructured fibers exhibit self-cleaning property to dye droplets under visible light irradiation. Meanwhile, due to its hydrophobicity, the resultant product can automatically remove dust on its surface under the rolling condition of droplets. Hence, the as-prepared product cannot only degrade the contaminated compounds on the surface of the material, but also reduce the maintenance cost of the material due to its self-cleaning performance. Therefore, the as-prepared product possesses potential applications in degradation of organic pollutants and water treatment, which makes it a prospective material in the field of environmental treatment.
机译:通过基于电纺原钛酸四丁酯(TBOT)/ PVDF纤维的一步水热处理,设计了基于菜花状MoS2和TiO2 / PVDF纤维的新型柔性可循环利用的核-壳异质结构纤维。低的水热温度避免了高温过程,并保持了合成材料的灵活性。详细讨论了所得产物的形成机理。 MoS 2的复合物不仅扩大了光收集窗口以包括可见光,而且还提高了光生电子和空穴的分离效率。已证明所制备的产物在可见光照射下对若丹明B和盐酸左氧氟沙星盐酸盐的降解具有优异且稳定的光催化活性。此外,TiO2 / PVDF @ MoS2核-壳异质结构纤维在可见光照射下表现出对染料液滴的自清洁性能。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其表面上的灰尘。因此,所制备的产品不仅可以降解材料表面上的污染化合物,而且由于其自清洁性能还可以降低材料的维护成本。因此,所制备的产品在有机污染物的降解和水处理中具有潜在的应用,使其成为环境处理领域中的潜在材料。

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