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Superwetting Double-Layer Polyester Materials for Effective Removal of Both Insoluble Oils and Soluble Dyes in Water

机译:超湿双层聚酯材料,可有效去除水中的不溶性油类和可溶性染料

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摘要

Inspired by the mussel adhesive protein and the lotus leaf, Ag-based double-layer polyester (DL-PET) textiles were fabricated for effective removal of organic pollutants in water. The DL-PET textiles are composed of a top superamphiphilic layer and a bottom superhydrophobic/superoleophilic layer. First, the PET textiles were modified with a layer of polydopamine (PDA) and deposited with Ag nanoparticles to form the PET@PDA(H)Ag textiles. The top superamphiphilic layer, formed by immobilizing Ag3PO4 nanoparticles on the PET@PDA@Ag textile, shows excellent visible-light photocatalytic activity. The bottom superhydrophobic/ superoleophilic layer, formed by modifying the PET@PDA@Ag textile using dodecyl mercaptan, is mechanically, environmentally, and chemically very stable. The water-insoluble oils with low surface tension can penetrate both layers of the DL-PET textiles, while the water with soluble organic dyes can only selectively wet the top layer owing to their unique wettability. Consequently, the water-soluble organic contaminants in the collected water can be decomposed by the Ag3PO4 nanoparticles of the top layer under visible-light irradiation or even sunlight in room conditions. Thus, the DL-PET textiles can remove various kinds of organic pollutants in water including both insoluble oils and soluble dyes. The DL-PET textiles feature unique wettability, high oil/water separation efficiency, and visible-light photocatalytic activity.
机译:受贻贝粘附蛋白和荷叶的启发,制造了基于Ag的双层聚酯(DL-PET)纺织品,以有效去除水中的有机污染物。 DL-PET纺织品由顶部超两亲层和底部超疏水/超亲油层组成。首先,用一层聚多巴胺(PDA)对PET纺织品进行改性,然后将其沉积在Ag纳米颗粒上,以形成PET @ PDA(H)Ag纺织品。通过将Ag3PO4纳米颗粒固定在PET @ PDA @ Ag纺织品上而形成的最上层两亲层表现出出色的可见光光催化活性。通过使用十二烷基硫醇改性PET @ PDA @ Ag纺织品形成的底部超疏水/超亲油层在机械,环境和化学方面非常稳定。具有低表面张力的水不溶性油可以渗透DL-PET织物的两层,而具有可溶性有机染料的水由于其独特的润湿性而只能选择性地润湿顶层。因此,收集的水中的水溶性有机污染物可以在可见光照射下,甚至在室内阳光下被顶层的Ag3PO4纳米颗粒分解。因此,DL-PET纺织品可以去除水中的各种有机污染物,包括不溶性油和可溶性染料。 DL-PET纺织品具有独特的润湿性,高油/水分离效率以及可见光光催化活性。

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