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Fabrication and Characterization of Nanostructured Mg-doped CdS/AAO nanoporous membrane for sensing Applications

机译:纳米Mg掺杂CdS / AAO纳米多孔膜在传感领域的制备与表征

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In this study, Mg-doped CdS nanostructure was deposited onto anodic aluminum oxide (AAO) membrane substrate using sol-gel spin coating method. The AAO membrane was prepared by a two-step anodization process combined with pore widening process. The morphology, chemical composition, and structure of the spin- coated CdS nanostructure have been studied. The morphology of the fabricated AAO membrane and the deposited Mg-doped CdS nanostructure was investigated using scanning electron microscopy (SEM). The SEM of AAO illustrates a typical hexagonal and smooth nanoporous alumina membrane with interpore distance of ~ 100 tun, the pore diameter of ~ 60 run. SEM of Mg-doped CdS shows porous nanostructured film of CdS nanoparticles. This film well adherents and covers the AAO substrate. The energy dispersive X-ray (EDX) pattern exhibits the signals of Al, O from AAO membrane and Mg, Cd, and S from the deposited CdS. This indicates the high purity of the fabricated membrane and the deposited Mg-doped CdS nanostructure. Using X-ray diffraction (XRD) pattern, Scherrer equation was used to calculate the average crystallite size. Additionally, the texture coefficients and density of dislocations were calculated. The fabricated CdS/AAO was applied to detect glucose of different concentrations. The proposed method has some advantages such as simple technology, low cost of processing, and high throughput. All of these factors facilitate the use of the prepared films in sensing applications.
机译:在这项研究中,使用溶胶-凝胶旋涂法将掺Mg的CdS纳米结构沉积到阳极氧化铝(AAO)膜基材上。通过两步阳极氧化工艺与扩孔工艺相结合来制备AAO膜。已经研究了旋涂的CdS纳米结构的形态,化学组成和结构。使用扫描电子显微镜(SEM)研究了制成的AAO膜的形态和沉积的掺杂Mg的CdS纳米结构。 AAO的SEM显示了典型的六角形光滑纳米多孔氧化铝膜,其孔间距离为〜100 tun,孔径为〜60 run。掺Mg CdS的SEM显示出CdS纳米颗粒的多孔纳米结构薄膜。该膜可很好地粘附并覆盖AAO基材。能量色散X射线(EDX)模式显示来自AAO膜的Al,O信号和来自沉积的CdS的Mg,Cd和S信号。这表明所制造的膜和沉积的掺Mg的CdS纳米结构的纯度很高。使用X射线衍射(XRD)模式,使用Scherrer方程计算平均晶粒尺寸。另外,计算了结构系数和位错密度。制备的CdS / AAO被用于检测不同浓度的葡萄糖。所提出的方法具有一些优点,例如技术简单,处理成本低和吞吐量高。所有这些因素促进了制备的薄膜在传感应用中的使用。

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