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Improving Visible Light-Absorptivity and Photoelectric Conversion Efficiency of a TiO2 Nanotube Anode Film by Sensitization with Bi2O3 Nanoparticles

机译:通过Bi2O3纳米粒子敏化提高TiO2纳米管阳极膜的可见光吸收率和光电转换效率

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摘要

This study presents a novel visible light-active TiO2 nanotube anode film by sensitization with Bi2O3 nanoparticles. The uniform incorporation of Bi2O3 contributes to largely enhancing the solar light absorption and photoelectric conversion efficiency of TiO2 nanotubes. Due to the energy level difference between Bi2O3 and TiO2, the built-in electric field is suggested to be formed in the Bi2O3 sensitized TiO2 hybrid, which effectively separates the photo-generated electron-hole pairs and hence improves the photocatalytic activity. It is also found that the photoelectric conversion efficiency of Bi2O3 sensitized TiO2 nanotubes is not in direct proportion with the content of the sensitizer, Bi2O3, which should be carefully controlled to realize excellent photoelectrical properties. With a narrower energy band gap relative to TiO2, the sensitizer Bi2O3 can efficiently harvest the solar energy to generate electrons and holes, while TiO2 collects and transports the charge carriers. The new-type visible light-sensitive photocatalyst presented in this paper will shed light on sensitizing many other wide-band-gap semiconductors for improving solar photocatalysis, and on understanding the visible light-driven photocatalysis through narrow-band-gap semiconductor coupling.
机译:这项研究提出了一种新型的Bi2O3纳米粒子敏化的可见光活性TiO2纳米管阳极膜。 Bi 2 O 3的均匀掺入有助于大大提高TiO 2纳米管的太阳光吸收和光电转换效率。由于Bi2O3和TiO2之间的能级差,建议在Bi2O3敏化的TiO2杂化物中形成内置电场,从而有效分离光生电子空穴对,从而提高光催化活性。还发现Bi2O3敏化的TiO2纳米管的光电转换效率与敏化剂Bi2O 3 的含量不成正比,应仔细控制以实现优异的光电性能。 Bi 2 O 3 的能带隙相对于TiO 2 较窄,可以有效地收集太阳能以产生电子和空穴,而TiO 2 收集并传输载流子。本文提出的新型可见光敏光催化剂将为使许多其他宽带隙半导体敏化以提高太阳光催化性能,以及通过窄带隙半导体耦合理解可见光驱动的光催化作用提供启示。

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