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Visible light driven photocatalytic activity of ZnO/CuO nanocomposites coupled with rGO heterostructures synthesized by solid-state method for RhB dye degradation

机译:ZnO / CuO纳米复合材料的可见光驱动光催化活性与RGO异质结构,通过固态方法合成RHB染料降解

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Metal oxide frame works along with carbon materials have been attracting tremendous attention of researches as the potential materials for energy and environmental remediation. In the present work heterostructures of (ZnO/CuO)/rGO ternary nanocomposites were synthesized by solid-state method. The crystalline structure of the nanoparticles was obtained from the XRD analysis. Optical band gap of the ZnO nanoparticles (3.1 eV) is tuned to 2.8 eV in the synthesized (ZnO/CuO)/rGO ternary nanocomposites. Field emission scanning electron microscope images of the (ZnO/CuO)/rGO ternary nanocomposites revealed formation of well-developed flowers like morphology of (ZnO/CuO) nanoparticles on rGO sheets. Photoluminescence spectroscopy analysis of (ZnO/CuO)/rGO ternary nanocomposites show enhancement in the electron-hole pair separation and thereby diminishing electron-hole pairs recombination rates effectively. In the present work, the photocatalytic activity of the ZC(3)G(15) ternary nanocomposites show 99% and 93% of degradation efficiency respectively against RhB dye and 4-chlorophenol for 20 min under visible light irradiation. Thus, the simple solid-state method provides the effective ternary nanocomposites heterostructures light harvesting material for energy and environmental remediation. (C) 2019 Production and hosting by Elsevier B.V. on behalf of King Saud University.
机译:金属氧化物框架与碳材料一起使用,这一直引起了对能源和环境修复的潜在材料的巨大关注。在本作工作中,通过固态方法合成(ZnO / CuO)/ Rgo三元纳米复合材料的异质结构。从XRD分析中获得纳米颗粒的结晶结构。 ZnO纳米颗粒(3.1eV)的光带间隙在合成(ZnO / CuO)/ Rgo三元纳米复合材料中调谐到2.8eV。 (ZnO / CuO)/ Rgo三元纳米复合材料的场发射扫描电子显微镜图像显示出在RGO片材上的(ZnO / CuO)纳米粒子的形态形成的良好发育的花朵。 (ZnO / CuO)/ Rgo三元纳米复合材料的光致发光光谱分析显示了电子 - 空穴对分离中的增强,从而有效地减少了电子空穴对重组率。在本作工作中,ZC(3)G(15)三元纳米复合材料的光催化活性分别显示出99%和93%的可见光辐照下对rHB染料和4-氯苯酚的降解效率20分钟。因此,简单的固态方法提供了有效的三元纳米复合材料异质结构光收获材料,用于能量和环境修复。 (c)2019年Elsevier B.V的生产和托管。代表沙特大学国王。

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