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Cu{sub}2O Nanorods with Large Surface Area for Photodegradation of Organic Pollutant under Visible Light

机译:具有大表面积的Cu {亚} 2O纳米棒,用于在可见光下的有机污染物的光降解

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Cu{sub}2O nanorods with extraordinary large surface area are synthesized by polyol method successfully. Their photocatalytic property is evaluated by the photodegradation of brilliant red dye under visible light irradiation. For comparison, Cu{sub}2O nanocubes are synthesized and evaluated with photocatalytic property as well. The results show that the photocatalytic activity of the Cu{sub}2O nanorods is more than one time higher than that for Cu{sub}2O nanocubes under visible light. Additionally, the structure of the Cu{sub}2O nanorods is very stable and they can not be oxidized to CuO even during the photocatalytic reaction process. It is noticeable that this kind of Cu{sub}2O nanorods has remarkable large surface areas 47.6 m{sup}2/g, which is about forty times as large as that for as-prepared Cu{sub}2O nanocubes and it is also three times larger than that for the reported porous Cu{sub}2O nanoparticles. The large surface area of Cu{sub}2O nanorods leads to its higher adsorption ability to the brilliant red dye and excellent high photocatalytic activity under visible light. Since Cu{sub}2O nanorods are very stable and have high photocatalytic activity under visible light, they are expected to be used in photocatalytic oxidation technology practically in the future.
机译:具有非凡大表面积的Cu {Sub} 2O纳米棒通过成功通过多元醇方法合成。通过在可见光照射下的光亮红染料的光降解来评估它们的光催化性质。为了比较,Cu {Sub} 2O纳米尺寸也用光催化性能进行了合成和评价。结果表明,Cu {Sub} 2O纳米棒的光催化活性比可见光下的Cu {Sub} 2O纳米孔的达到多于一次。另外,Cu {亚} 2O纳米棒的结构非常稳定,即使在光催化反应过程中,它们也不能氧化成CuO。这种Cu {Sub} 2O纳米棒具有显着的大表面积47.6 m {sup} 2 / g,其大约为适用于制备的Cu {sub} 2o纳米尺寸的四十次。比报告的多孔Cu} 2O纳米颗粒大的三倍。 Cu {Sub} 2O纳米棒的大表面积导致其在可见光下亮红色染料和优异的高光催化活性的吸附能力。由于Cu {Sub} 2O纳米棒非常稳定并且在可见光下具有高光催化活性,因此预计将在未来实际上用于光催化氧化技术。

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