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Hollow CuO nanospheres uniformly anchored on porous Si nanowires: preparation and their potential use as electrochemical sensors

机译:空心措团簇均匀固定在多孔硅纳米线:准备和他们潜在使用电化学传感器

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Hollow CuO nanospheres have been prepared via a reduction reaction of copper ions on porous Si nanowires combined with calcination in air and uniformly anchored on their surfaces. Scanning electron microscopy (SEM), transmission electron microscopy (TEM) and X-ray photoelectron spectroscopy (XPS) were employed to characterize and analyze as-synthesized samples. The results reveal that Si nanowires fabricated from heavily doped Si wafer are formed with a meso-porous structure by an Ag-assisted etching approach, and Cu nanoparticles are formed and uniformly decorated on the Si nanowires through a reaction of copper ions reduced by silicon. After annealing in air, Cu nanoparticles are in situ oxidized and transformed into CuO, leading to the formation of hollow nanospheres because of the Kirkendall effect. The diameter size of as-prepared CuO hollow spheres anchored on porous Si nanowires is mainly around 30 nm. Finally, in order to illuminate the advantages of this novel hybrid nanostructure of nanosized hollow spheres supported on porous nanowires, its electrochemical sensing performance to hydrazine as an example has been further investigated. The results confirm that it is a good potential application to detect hydrazine.
机译:空心措已经准备通过一个团簇还原反应的铜离子在多孔硅纳米线结合在空气和煅烧均匀固定在其表面。电子显微镜(SEM),透射电子显微镜(TEM)和x射线光电子能谱(XPS)是用来描述并分析as-synthesized样本。从严重表明,硅纳米线制作meso-porous掺杂硅晶片形成结构由一个Ag-assisted蚀刻的方法,和铜纳米粒子形成和统一装饰在硅纳米线通过一个反应铜离子减少硅。在空气中退火、铜纳米颗粒原位氧化,变成措,导致的团簇的形成空洞柯肯特尔效应。好了措空心球体固定在多孔硅纳米线主要是约30 nm。为了说明这部小说的优势混合纳米结构纳米空心球支持多孔纳米线,它的肼电化学传感性能作为一个例子进一步调查。结果证实,这是一个很好的潜力应用程序来检测肼。

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