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首页> 外文期刊>Optical Materials >Impact of morphology evolution of ZnSn(OH)_6 microcubes on photocatalytic activity of ZnSn(OH)_6/SnO_2/rGO ternary nanocomposites for efficient degradation of organic pollutants
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Impact of morphology evolution of ZnSn(OH)_6 microcubes on photocatalytic activity of ZnSn(OH)_6/SnO_2/rGO ternary nanocomposites for efficient degradation of organic pollutants

机译:ZnSn(OH)_6微电影形态演化对ZnSn(OH)_6 / SnO_2 / RGo三元纳米复合材料进行光催化活性的影响,有机污染物的有效降解

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In this study, Zinc hydroxystannate/tin dioxide/reduced graphene oxide (ZnSn(OH)(6)/SnO2/rGO) ternary nanocomposites were synthesized via a facile one-step hydrothermal route by using graphene oxide, zinc nitrate hexahydrate, and tin (IV) chloride pentahydrate as the precursors. The crystal structure, morphology, and optical properties of ZnSn(OH)(6)/SnO2/rGO ternary nanocomposites were characterized by x-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), Raman spectroscopy and UV-vis spectroscopy, respectively. The results of XRD pattern revealed the formation of fcc perovskite ZnSn(OH)(6)(ZHS) and tetragonal SnO2 structure. The FESEM images displayed that the ZHS microcubes and SnO2 nanoparticles were distributed on the graphene sheets. The composites were used as photocatalyst for degradation of methylene blue (MB) molecules. The photocatalytic performance of the samples showed that the ZHS/SnO2/rGO nanocomposite exhibited a much higher photocatalytic activity than pure samples. The ternary nanocomposite synthesized at 160 degrees C with a graphene oxide concentration of 1 mg/mL has the ability to completely degradation MB in less than 60 min under UV radiation. The rate of hydroxyl radical (center dot OH) generated in the photocatalytic process was investigated using PL spectroscopy and coumarin (COU) as a probe molecule. Thus it can be intended that the mechanism of MB degradation by the as-synthesized nanocomposites followed indirect oxidation of the dye by center dot OH generated during the photocatalyst process.
机译:在该研究中,通过使用石墨烯氧化物,硝酸锌六水合物和锡(ZnSn(OH)(6)/ Snahahe,通过容易的一步水热途径合成羟基炔丙酸盐/锡/锡/锡/氧化锡/氧化锡(ZnSn(OH)(6)/ SnO 2 / Rgo)三元纳米复合材料( iv)氯化氯化物作为前体。 X射线衍射(XRD),场发射扫描电子显微镜(FESEM),拉曼光谱和UV-Vis光谱,表征ZnSn(OH)(6)/ SnO2 / Rgo三元纳米复合材料的晶体结构,形态和光学性质, 分别。 XRD模式的结果显示FCC钙钛矿ZnSn(OH)(6)(ZhS)和四方SnO2结构的形成。将ZHS微电池和SNO2纳米颗粒分布在石墨烯片上的FESEM图像。复合材料用作光催化剂,用于降解亚甲基蓝(MB)分子。样品的光催化性能表明,ZHS / SNO2 / RGO纳米复合材料表现出比纯样品更高的光催化活性。在160℃下合成的三元纳米复合材料具有1mg / ml的石墨烯氧化物浓度,在紫外线辐射下具有在小于60分钟的小于60分钟的能力。使用Pl光谱和香豆素(COU)作为探针分子研究在光催化过程中产生的羟基自由基(中心点OH)。因此,可以旨在通过由合成的纳米复合材料进行Mb降解的机制,然后通过在光催化剂过程中产生的中心点孔的间接氧化染料。

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