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The three-dimensional flower-like Bi2WO6 assisted by ethanolamine through a microwave method for efficient photocatalytic activity

机译:微波法乙醇胺辅助三维花状Bi2WO6的高效光催化活性

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摘要

The three-dimensional flower-like Bi2WO6 was synthesized through a one-step microwave method (the reaction temperature was 434 K and the reaction took 10 min) with the assistance of ethanolamine (EA). The prepared samples were characterized by X-ray diffraction, scanning electron microscopy, Fourier-transform infrared spectroscopy, ultraviolet–visible spectroscopy, PL, X-ray photoelectron spectroscopy and Brunauer–Emmett–Teller analysis. Methyl orange was used as target pollutant to evaluate the photocatalysis property of samples. Furthermore, the influence of the mechanism of EA on the structure and catalytic performance of Bi2WO6 was discussed. The detailed characterizations revealed that the three-dimensional flower-like Bi2WO6 was successfully synthesized with the assistance of EA. The results confirmed that EA significantly influenced the morphology of Bi2WO6 products. The addition of EA can effectively alter the pressure of the reaction and improve the crystal phase and structure of Bi2WO6 photocatalysts, enhancing the photocatalytic activity of samples and improving the photocatalytic efficiency. EA can serve as an assembling agent and structure-directing agent resulting in the formation of flower-like architectures. With the increase of the amount of EA, the as-prepared Bi2WO6 sample gradually forms a flower-like structure, leading to a shorter time of light holes migrating to the surface of the catalyst. It makes the compound rate significantly decreased, and improves the photocatalytic efficiency of the sample.
机译:借助乙醇胺(EA),通过一步微波法(反应温度为434 K,反应时间为10分钟)合成了三维花状Bi2WO6。通过X射线衍射,扫描电子显微镜,傅立叶变换红外光谱,紫外可见光谱,PL,X射线光电子能谱和Brunauer-Emmett-Teller分析来表征所制备的样品。以甲基橙为目标污染物,对样品的光催化性能进行了评价。此外,讨论了EA的机理对Bi2WO6的结构和催化性能的影响。详细的表征表明,借助EA成功地合成了三维花状Bi2WO6。结果证实,EA显着影响Bi2WO6产物的形貌。 EA的加入可以有效改变反应压力,改善Bi2WO6光催化剂的晶相和结构,增强样品的光催化活性,提高光催化效率。 EA可以用作组装剂和结构导向剂,从而形成花状结构。随着EA量的增加,所制备的Bi2WO6样品逐渐形成花状结构,从而导致更短的光孔迁移到催化剂表面的时间。它使复合速率大大降低,并提高了样品的光催化效率。

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