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Effect of nanographene platelets in transition metal-doped ZnO for photocatalytic application

机译:纳米血小板在光催化施用过渡金属掺杂ZnO中的影响

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Both doping and combining ZnO nanoparticles with iron and nanographene platelets (NGP), respectively, have been successfully conducted using the co-precipitation method with various loadings of NGP. The differential thermal analysis and thermogravimetric analysis (DTA/TGA) showed weight loss from the as-prepared samples owing to boundwater and adsorbed water elimination and the combusted effect of NGP in the samples. The structure and morphology or X-ray diffraction (XRD) characterization of the Fe-doped ZnO/NGP nanocomposites exhibited hexagonal wurtzite structure from ZnO and graphite structure from NGP. Raman spectroscopy was also used to observe the frequency modes of the samples. The Fourier transform infrared (FTIR) spectroscopy indicated that increasing NGP amount could decrease the intensity of Fe-O and ZnO vibration mode peaks on the absorption spectra. The photocatalytic test results indicated that certain weight percentage (wt.%) of NGP could enhance the performance of Fe-doped ZnO to degrade methylene blue dye in an aqueous solution under UV light irradiation. To obtain the main active species in the photocatalytic activity, additional scavengers were added in the solution. We also varied the dye and dosage concentration to determine the maximum condition in the photocatalytic process.
机译:掺杂和组合ZnO纳米颗粒与铁和纳米蛋白血小板(NGP),使用具有各种NGP的共沉淀法成功进行的。差分热分析和热重分析(DTA / TGA)由于裸露的样品和吸附的水消除和NGP在样品中的燃烧作用而显示出重量损失。 Fe掺杂的ZnO / NGP纳米复合材料的结构和形态或X射线衍射(XRD)表征表现出来自NGP的ZnO和石墨结构的六边形紫立岩结构。拉曼光谱还用于观察样品的频率模式。傅里叶变换红外(FTIR)光谱表明,增加的NGP量可能会降低吸收光谱上的Fe-O和ZnO振动模式峰的强度。光催化试验结果表明,一定的重量百分比(重量%)NGP可以增强Fe掺杂ZnO的性能,以使UV光照射下的水溶液中的亚甲基蓝色染料。为了在光催化活性中获得主要活性物质,在溶液中加入另外的清除剂。我们还改变了染料和剂量浓度,以确定光催化过程中的最大条件。

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