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首页> 外文期刊>CERAMICS INTERNATIONAL >Tailoring the properties of cerium doped zinc oxide/reduced graphene oxide composite: Characterization, photoluminescence study, antibacterial activity
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Tailoring the properties of cerium doped zinc oxide/reduced graphene oxide composite: Characterization, photoluminescence study, antibacterial activity

机译:剪裁铈掺杂氧化锌/氧化铟烯氧化物复合材料的性质:表征,光致发光研究,抗菌活性

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摘要

Ce doped ZnO/rGO composite materials were prepared by a one-pot hydrothermal process without any surfactant. The size, crystallography and morphology of the composite were investigated in detail by X- ray diffraction (XRD) studies, Raman spectroscopy, scanning electron microscopic (SEM), transmission electron microscopic (TEM) studies, UV-Vis spectroscopic analysis and X-ray photoelectron spectroscopic (XPS) analysis. The XRD pattern substantiates the formation of Ce doped ZnO/rGO composite revealing the wurtzite structure of ZnO. The SEM micrograph illustrates flower-like morphology for ZnO/rGO composite which coalesced further after cerium incorporation. Additionally, TEM image illustrated that ZnO hexagons were disoriented from its flower structure in Ce/ZnO/rGO composite. The XPS spectra further reaffirm the formation of cerium doped ZnO/rGO composite. The photoluminescence (PL) spectra confirms that emission occurs in the UV and visible region and several active sub-levels were observed in visible region on deconvolution, due to the incorporation of cerium. Antibacterial activity towards B. subtills and V. harveyi affirmed that the incorporation of Ce in ZnO/rGO composite leads to an improved antibacterial activity.
机译:Ce掺杂的ZnO / Rgo复合材料通过无任何表面活性剂的单罐水热法制备。通过X射线衍射(XRD)研究,拉曼光谱,扫描电子显微镜(SEM),透射电子显微镜(TEM)研究,UV-Vis光谱分析和X射线详细研究了复合材料的尺寸,晶体学和形态光电子光谱(XPS)分析。 XRD模式证实了Ce掺杂ZnO / rgo复合材料的形成,揭示了ZnO的紫立岩结构。 SEM显微照片说明了ZnO / RGO复合材料的花样形态,其在铈掺入后进一步结合。另外,所示的TEM图像示出了ZnO六边形从CE / ZnO / RGO复合材料中的花卉结构迷失方向。 XPS光谱进一步重述铈掺杂ZnO / RGO复合材料的形成。光致发光(PL)光谱证实,由于铈的掺入,在Deconvoluls的可见区域中观察到紫外线和可见区域中发生的发射,并且在去折叠的可见区域中观察到几个活性子水平。 B. Subotills和V.Arveyi的抗菌活性确认CE在ZnO / Rgo复合材料中的掺入导致改善的抗菌活性。

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