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Growth and photocatalytic behavior of transparent reduced GO-ZnO nanocomposite sheets

机译:透明减少Go-ZnO纳米复合板的生长和光催化行为

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Reduced graphene oxide-zinc oxide (rGO-ZnO) nanocomposites were grown on solid substrates by rapid thermal treatment of Langmuir-Blodgett transferred GO-Zn composite sheets in oxygen ambient. The changes induced by uptake of Zn2+ ions and subsequent thermal treatment on surface morphology, micro-structure, composition and optical properties of composite sheets were investigated by atomic force microscopy, high resolution transmission electron microscopy (HR-TEM), X-ray photoelectron spectra (XPS), Fourier transform infrared (FT-IR) and Raman measurements. The morphological features of composites are practically independent of subphase Zn concentration and are largely determined by the temperature of rapid thermal treatment. FT-IR results indicate the presence of zinc carboxylate in composites and HR-TEM results confirm the formation of ZnO nanoparticles upon subsequent oxidation. XPS and Raman measurements show that rapid thermal treatment in oxygen ambient results in decrease of carbon-oxygen functional groups and increase in graphitic carbon content leading to the reduction of GO in the composites. The average optical transmittance of rGO-ZnO composites in the visible region is found to be similar to 87%. Photocatalytic studies carried out on methylene blue (MB) overlayer coated rGO-ZnO composites show reduction in concentration of MB with increasing duration of UV irradiation. The transparent two-dimensional rGO-ZnO composite solid state structures thus facilitate efficient adsorption and degradation of MB molecules, without any composite aggregation.
机译:通过在氧环境中的快速热处理在氧气环境中的Langmuir-Blodgett转移的Go-Zn复合板的快速热处理,在固体基材上生长了石墨烯氧化锌(RGo-ZnO)纳米复合材料。通过原子力显微镜,高分辨率透射电子显微镜(HR-TEM),X射线光电子谱研究,研究了Zn2 +离子的吸收和随后的热处理对表面形态的热处理,微观结构,组合物和光学性能的改变,高分辨率透射电子显微镜(HR-TEM),X射线光电子谱(XPS),傅里叶变换红外(FT-IR)和拉曼测量。复合材料的形态学特征实际上与子相Zn浓度不同,并且主要由快速热处理的温度决定。 FT-IR结果表明在复合材料和HR-TEM结果中存在碳酸锌,在随后的氧化时确认ZnO纳米颗粒的形成。 XPS和拉曼测量表明,氧气环境中的快速热处理导致碳 - 氧官能团的降低,并增加石墨碳含量,导致复合材料中的逐渐减少。发现可见区域中Rgo-ZnO复合材料的平均光学透射率类似于87%。在亚甲基蓝(MB)覆盖物涂覆的RGO-ZnO复合材料上进行的光催化研究显示,随着UV辐射持续时间的持续时间,Mb的浓度降低。因此,透明的二维rgo-ZnO复合固态结构促进了MB分子的有效吸附和降解,而无需任何复合聚集。

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