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Photocatalytic Activity and Visible-Light Response of TiO_2 Thin Film Doped with Nitrogen by Using Urea

机译:用尿素掺杂氮气的TiO_2薄膜的光催化活性和可见光响应

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TiO_2 has become a widely investigated photocatalyst because of its low cost, low toxicity and high photocatalytic activity under UV irradiation that causes photocatalytic decomposition of organic compounds. Impurities dopant and metal are often used to acquire impurities doped or metal doped TiO_2 powder by a sol-gel method. In this paper, we made nitrogen doped TiO_2 by a simple process. TiO_2 (P25) thin films with 80% of anatase and 20% of rutile were fabricated on FTO glass by electrophoretic deposition (EPD). These were then doped with nitrogen by using urea and sintered in an electric furnace at 500 and 600 degrees Celsius. EPD was superior for film formation at dispersibility. We calculated absorbance spectra of nitrogen doped TiO_2 thin film fabricated on FTO glass. As the result, 600 degrees Celsius is superior sintering temperature at absorbance under visible light than 500 degrees Celsius. Moreover, when the samples sintered at 600 degrees Celsius, each additive amount had a different increment of absorbance in specific visible light range. This result indicates the improvement in visible-light response on TiO_2 by the simple process. To further research, it is essential to make nitrogen doped TiO_2 under pressure and measure the photodegradation reaction.
机译:TiO_2已成为一种广泛研究的光催化剂,因为其在UV照射下的低成本,低毒性和高光催化活性,导致有机化合物的光催化分解。杂质掺杂剂和金属通常用于通过溶胶 - 凝胶法获取掺杂掺杂或金属掺杂的TiO_2粉末。在本文中,我们通过简单的过程使氮气掺杂TiO_2。通过电泳沉积(EPD),在FTO玻璃上制造具有80%锐钛矿和20%金红石的TiO_2(P25)薄膜。然后通过使用尿素掺杂氮气并在500和600摄氏度的电炉中烧结。 EPD在分散性处于薄膜形成优越。我们计算了在FTO玻璃上制造的氮掺杂TiO_2薄膜的吸光度光谱。结果,600摄氏度在可见光下的吸光度下的烧结温度优于500摄氏度。此外,当样品在600摄氏度烧结时,每个添加量在特定的可见光范围内具有不同的吸光度增量。该结果表示通过简单的过程对TiO_2的可见光响应的改进。进一步研究,必须在压力下使氮掺杂TiO_2并测量光降解反应。

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