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Facile synthesis of ZnO/GO nanoflowers over Si substrate for improved photocatalytic decolorization of MB dye and industrial wastewater under solar irradiation

机译:Si衬底的ZnO / GoOflowers的ZnO / Go键合的合成改善MB染料的光催化脱色,太阳照射下的工业废水

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In this work, we report a new method for the synthesis of zinc oxide (ZnO) nanoflowers/graphene oxide (GO) composite, uniformly grown over Silicon (Si) substrate. The synthesis is performed by utilizing aqueous chemical approach where ZnO nanoseeds are obtained using zinc acetate (C4H6O4Zn) and isopropanol (C3H7OH), while Graphene oxide (GO) is fabricated by using Hummer's method. The nanocomposite was fabricated by mixing of GO and ZnO nanoseed solution followed by vigorous ultra-sonication and spin-coating over the Si substrate. Finally, the nanoflowers type structures were grown from ZnO nanoseed by placing the coated Si substrate in a solution containing Zn+2 environment. The nanocomposite was characterized by various techniques such as Field emission scanning electron microscopy (FESEM), Fourier transform infrared spectroscopy (FTIR), Raman spectroscopy and X-ray diffraction (XRD) analysis. The performance of nanocomposite was analyzed for remediation of methylene blue (MB) dye by utilizing sunlight as an energy source to initiate the photoreaction. The composite (GO/ZnO) shows similar to 33% faster decolorization of 20 mg/L of MB dye in comparison with pure ZnO. The improved performance is attributed to the prevention of recombining of electron (conduction band) and holes (valence band) during the photocatalytic reaction. Moreover, GO itself provides excess electrons for enhancing the photocatalytic reaction by providing excess hydroxyl radicals. Further, the nanocomposite was successfully utilized for decolorization of an industrial dye. Hence, nanoflowers type ZnO/GO composite material grown over Si substrate provides an alternative for effective removal of real dye from industrial wastewater without any post process filtration requirement.
机译:在这项工作中,我们报告了一种新方法,用于合成氧化锌(ZnO)纳米锭/石墨烯氧化物(GO)复合材料,均匀地生长在硅(Si)衬底上生长。通过使用乙酸锌(C4H6O4ZN)和异丙醇(C3H7OH)获得ZnO纳米糖(C3H7OH)的水化学方法来进行合成,而通过使用悍马的方法制造石墨烯氧化物(GO)。通过混合Go和ZnO纳米糖溶液,然后在Si衬底上混合剧烈的超超声处理和旋涂来制造纳米复合材料。最后,通过将涂覆的Si衬底放入含有Zn + 2环境的溶液中,从ZnO纳米糖生长纳米轧机型结构。纳米复合材料的特征在于各种技术,例如场发射扫描电子显微镜(FESEM),傅里叶变换红外光谱(FTIR),拉曼光谱和X射线衍射(XRD)分析。分析纳米复合材料的性能来通过利用阳光作为能量源来修复亚甲基蓝(MB)染料,以引发光反应。与纯ZnO相比,复合材料(GO / ZnO)显示与20mg / L的MB染料的较快脱色。改进的性能归因于在光催化反应期间预防电子(导管)和孔(价带)的重新组合。此外,通过提供过量的羟基自由基,可以自身提供多余的电子以增强光催化反应。此外,纳米复合物成功用于工业染料的脱色。因此,在Si衬底生长的ZnO /去复合材料型ZnO /去复合材料提供了有效地从工业废水中去除实际染料,而无需任何后工艺过滤要求。

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