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ZnO Nanoparticles Co-Doped with Fe~(3+) and Eu~(3+) Ions for Solar Assisted Photocatalysis

机译:Fe〜(3+)和Eu〜(3+)离子共掺杂的ZnO纳米粒子用于太阳光催化

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In this study, ZnO nanoparticles co-doped with Fe~(3+) and Eu~(3+) were prepared by a facile co-precipitation method. The structure and morphology of the as-prepared nanoparticles were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM) and diffuse reflectance absorption spectra, respectively. The photocatalytic activities of the prepared catalysts were evaluated by photocatalytic degradation of methyl orange in aqueous solution with solar light irradiation. The co-doped Fe~(3+) and Eu~(3+) showed a synergistic effect, which significantly increased the photo-catalytic activity of ZnO. The influences of calcination time, photocatalytic reaction temperature and catalyst loading on the photocatalytic activity of the catalyst were also investigated. It was found that there were an optimum photocatalytic reaction temperature and an optimum catalyst loading for high photocatalytic efficiency, and the photocatalytic efficiency decreased with increase in calcination time. The results of this study demonstrate that the as-prepared product of Eu~(3+)/Fe~(3+)/ZnO is a promising photocatalyst for solar assisted degradation of organic pollutions.
机译:本研究采用简便的共沉淀法制备了Fe〜(3+)和Eu〜(3+)共掺杂的ZnO纳米粒子。分别通过X射线衍射(XRD),扫描电子显微镜(SEM)和漫反射吸收光谱表征所制备的纳米颗粒的结构和形态。通过在太阳光照射下水溶液中甲基橙的光催化降解来评估制得的催化剂的光催化活性。 Fe〜(3+)和Eu〜(3+)共掺杂具有协同作用,显着提高了ZnO的光催化活性。研究了煅烧时间,光催化反应温度和催化剂负载量对催化剂光催化活性的影响。已经发现,对于高的光催化效率,存在最佳的光催化反应温度和最佳的催化剂负载,并且光催化效率随着煅烧时间的增加而降低。这项研究的结果表明,所制备的Eu〜(3 +)/ Fe〜(3 +)/ ZnO产物是光催化降解有机污染物的有前途的光催化剂。

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