首页> 美国卫生研究院文献>ChemistryOpen >Cover Picture: Metastable β-Bi2O3 Nanoparticles with Potential for Photocatalytic Water Purification Using Visible Light Irradiation (ChemistryOpen 4/2013)
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Cover Picture: Metastable β-Bi2O3 Nanoparticles with Potential for Photocatalytic Water Purification Using Visible Light Irradiation (ChemistryOpen 4/2013)

机译:封面图片:具有亚可见光辐射的光催化水净化潜力的亚稳态β-Bi2O3纳米颗粒(ChemistryOpen 4/2013)

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摘要

Cover PictureMaik Schlesinger, Marcus Weber, Steffen Schulze, Michael Hietschold, and Michael Mehring*>The cover picture shows the degradation of the model dye rhodamine B (RhB) in water using β-Bi2O3 nanoparticles as photocatalyst, which was prepared from preorganized bismuth oxido clusters. In the background, a homemade photoreactor for in situ studies is shown, including the decolorizing process of the aqueous RhB solution as observed during visible light irradiation. The catalytic cycle shows crucial steps in RhB degradation at the surface of β-Bi2O3 nanoparticles (balls), which can be recycled. After adsorption of RhB at the surface of β-Bi2O3 nanoparticles, the color of the nanoparticles changes from orange to violet. The degradation process (represented by Pac-Man) is induced by irradiation with visible light, resulting in a complete decolorization of the solution as well as the surface of the β-Bi2O3 nanoparticles, indicating a fast de-ethylation process. The latter process is faster than desorption of partially degraded RhB species from the β-Bi2O3 surface, but is demonstrated to occur upon irradiation of RhB-loaded β-Bi2O3 in the solid state. For more details, see the Full Paper by Michael Mehring et al., on p. 146 ff.
机译:封面图片Maik Schlesinger,Marcus Weber,Steffen Schulze,Michael Hietschold和Michael Mehring * >封面图片使用β-Bi2O3纳米粒子作为光催化剂,在水中降解了模型染料若丹明B(RhB),由预先组织的铋氧化物簇制备。在背景中,显示了一种用于原位研究的自制光反应器,包括在可见光照射期间观察到的RhB水溶液的脱色过程。催化循环显示了RhB降解在β-Bi2O3纳米颗粒(球)表面的关键步骤,可以循环利用。 RhB吸附在β-Bi2O3纳米颗粒表面后,纳米颗粒的颜色从橙色变为紫色。降解过程(由Pac-Man代表)是通过可见光照射引起的,导致溶液以及β-Bi2O3纳米颗粒的表面完全脱色,表明快速的脱乙基过程。后一过程比部分降解的RhB物种从β-Bi2O3表面脱附的速度更快,但被证明是在照射RhB的固态β-Bi2O3时发生的。有关更多详细信息,请参见第5页的Michael Mehring等人的《全文》。 146及以下

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