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Preparation of transparent nanostructured N-doped TiO2 thin films by combination of sonochemical and CVD methods with visible light photocatalytic activity

机译:声化学与CVD相结合制备具有可见光光催化活性的透明纳米结构的N掺杂TiO2薄膜

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Pollution of water resources with pesticide compounds has raised serious environmental problems, and for photocatalytic degradation of these pollutants, thin film photocatalysts are preferred to colloidal ones due to the separation problem of colloidal nanoparticles. In this work, nanostructured TiO2 and N-doped TiO2 thin films with high transparency were deposited on glass and quartz substrates through sonochemical–chemical vapor deposition (CVD) method. The films prepared on glass and quartz substrates had nanocubic and nanospherical morphology, respectively. The presence of N atoms in the structure of TiO2 resulted in a decrease in the band gap energy of TiO2 and also in the reduction of photogenerated electron–hole recombination rate. Furthermore, the presence of N atoms induced the formation of Ti3+ species which can act as hole trapping centers. The prepared thin films were also used for the visible light photocatalytic degradation of paraoxon pesticide. According to these results among the prepared thin films, the N-doped TiO2 thin films have higher photocatalytic activity than pure TiO2 thin films. Moreover, in comparison with the thin films deposited on quartz substrate, the films on glass substrate have higher photocatalytic performance, which can be related to the special nanocubic morphology of these samples.
机译:农药化合物对水资源的污染已经引起了严重的环境问题,并且由于胶体纳米颗粒的分离问题,对于这些污染物的光催化降解,薄膜光催化剂比胶体催化剂更可取。在这项工作中,通过声化学-化学气相沉积(CVD)方法在玻璃和石英基板上沉积了具有高透明度的纳米结构TiO2和N掺杂TiO2薄膜。在玻璃和石英基板上制备的薄膜分别具有纳米立方和纳米球形的形态。 TiO2结构中N原子的存在导致TiO2的带隙能量降低,并且导致光生电子-空穴复合速率降低。此外,N原子的存在诱导了Ti3 +物种的形成,可以充当空穴陷阱中心。制备的薄膜还用于对氧磷农药的可见光光催化降解。根据这些结果,在制备的薄膜中,N掺杂的TiO 2薄膜具有比纯TiO 2薄膜更高的光催化活性。此外,与沉积在石英基板上的薄膜相比,玻璃基板上的薄膜具有更高的光催化性能,这可能与这些样品的特殊纳米立方形态有关。

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