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Powder and Nanotubes Titania Modified by Dye Sensitization as Photocatalysts for the Organic Pollutants Elimination

机译:染料敏化修饰的粉末和纳米管二氧化钛作为光催化剂用于消除有机污染物

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摘要

In this study, titanium dioxide powder obtained by the sol-gel method and TiO2 nanotubes, were prepared. In order to increase the TiO2 photoactivity, the powders and nanotubes obtained were modified by dye sensitization treatment during the oxide synthesis. The sensitizers applied were Quinizarin (Q) and Zinc protoporphyrin (P). The materials synthesized were extensively characterized and it was found that the dye sensitization treatment leads to modify the optical and surface properties of Titania. It was also found that the effectiveness of the dye-sensitized catalysts in the phenol and methyl orange (MO) photodegradation strongly depends on the dye sensitizer employed. Thus, the highest degradation rate for MO was obtained over the conventional Q-TiO2 photocatalyst. In the case of the nanotubes series, the most effective photocatalyst in the MO degradation was based on TiO2-nanotubes sensitized with the dye protoporfirin (ZnP). Selected catalysts were also tested in the phenol and MO photodegradation under visible light and it was observed that these samples are also active under this radiation.
机译:在本研究中,制备了通过溶胶-凝胶法获得的二氧化钛粉末和TiO2纳米管。为了提高TiO 2的光活性,在氧化物合成过程中通过染料敏化处理对得到的粉末和纳米管进行了改性。所使用的敏化剂是奎尼萨林(Q)和锌原卟啉(P)。对合成的材料进行了广泛的表征,发现染料敏化处理可改变二氧化钛的光学和表面性能。还发现染料敏化催化剂在苯酚和甲基橙(MO)光降解中的有效性强烈取决于所使用的染料敏化剂。因此,相对于常规的Q-TiO 2光催化剂,获得了最高的MO降解速率。在纳米管系列的情况下,在MO降解中最有效的光催化剂是基于用染料原卟啉(ZnP)敏化的TiO2纳米管。还对选择的催化剂在可见光下的苯酚和MO光降解中进行了测试,观察到这些样品在这种辐射下也具有活性。

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