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Utilization of reduced graphene oxide for the enhancement of photocatalytic property of TiO2 nanotube

机译:利用还原氧化石墨烯增强TiO2纳米管的光催化性能

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Photocatalysts based on TiO2 nanotubes and reduced graphene oxide (TNTs-RGO) were prepared by the hydrothermal method. The resulting TNTs-RGO composite photocatalysts were characterized by X-ray powder diffraction, transmission electron microscopy, diffuse reflection spectrum, Fourier transform infrared spectroscopy, N-2 adsorption-desorption isotherm, and fluorescence spectrum. The photocatalytic activity of TNTs-RGO was investigated through the degradation tests of Rhodamine B (RhB) and Cr(VI) under UV-light irradiation. The results showed that compared with TNTs or TiO2, TNTs-RGO possessed higher surface area, enhanced optical absorption in the visible-light region and improved separation efficiency of electron-hole pairs, leading to the remarkable increases in adsorption capacity and photocatalytic activity for RhB or Cr(VI), which was thanks to the introduction of RGO. On the basis of the experimental results, a possible photocatalytic degradation mechanism of RhB or Cr(VI) by TNTs-RGO was also proposed. The excellent absorption capacity and photocatalytic activity suggested the great potential applications of TNTs-RGO photocatalyst in environmental problems.
机译:采用水热法制备了基于TiO2纳米管和氧化石墨烯(TNTs-RGO)的光催化剂。通过X射线粉末衍射,透射电子显微镜,漫反射光谱,傅立叶变换红外光谱,N-2吸附-解吸等温线和荧光光谱对所得的TNTs-RGO复合光催化剂进行了表征。通过若丹明B(RhB)和Cr(VI)在紫外光照射下的降解试验研究了TNTs-RGO的光催化活性。结果表明,与TNTs或TiO2相比,TNTs-RGO具有更大的表面积,在可见光区域增强的光吸收和改善的电子-空穴对分离效率,从而导致对RhB的吸附能力和光催化活性显着提高。或Cr(VI),这要归功于RGO的引入。根据实验结果,还提出了可能的TNTs-RGO光催化降解RhB或Cr(VI)的机理。优异的吸收能力和光催化活性表明TNTs-RGO光催化剂在环境问题中具有巨大的潜在应用前景。

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