无表面活性剂共沉淀法制备掺杂ni的CeO2纳米球的结构、形态和光学性质

I. Y. Habib, Murtala Muhammad, Maimuna Yahaya Yakasai, A. D. Abdullahi
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摘要

一种高质量的材料确实取决于其制备过程中使用的技术以及其组成。这是因为颗粒相互作用形成团块,结果产生质量变差的颗粒。本研究分别采用表面活性剂自由沉淀法和共沉淀法制备了二氧化铈纳米球和Ni掺杂二氧化铈纳米球。采用XRD、SEM、EDX、UV-VIS和FTIR对制备的样品进行了表征。未掺杂二氧化铈的XRD谱图证实了二氧化铈的萤石立方结构的形成,掺杂二氧化铈样品的XRD谱图中没有附加相表明二氧化铈的立方结构被保留。FE-SEM分析表明,样品具有球形形貌。样品的平均晶粒尺寸和平均粒径均在纳米级范围内。紫外-可见分析显示样品具有优异的光学性能。发现未掺杂的氧化铈的光学带隙在掺杂3%和5% Ni时增大,这可能是由于Burstein- Moss效应。然而,发现掺杂1%的Ni可以减小未掺杂的铈的光学带隙,这可能与平均晶粒尺寸的减小有关,因此被认为是最佳的掺杂剂。EDX分析证实了铈、氧以及镍前驱体的预期掺杂浓度的存在。FTIR分析表明,所有样品均存在O-H拉伸振动。因此,这些具有增强性能的纳米结构可以作为潜在的材料用于许多电子和催化应用。
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Structural, morphological and optical properties of Ni-doped CeO2 nanospheres prepared by surfactant free co-precipitation technique
A high qualitative material is indeed depends on the technique utilized during its preparation as well as its composition. This is because particles do interact to form agglomerates, and in consequence, produce particles with deteriorated quality. In this study, ceria and Ni doped ceria nanospheres (NSs) were prepared using a surfactant free precipitation and co-precipitation techniques, respectively. The prepared samples were characterized using XRD, SEM, EDX, UV-VIS and FTIR. XRD pattern of the undoped ceria confirms the formation of a fluorite cubic structure of ceria and the absence of additional phase in the XRD patterns of the doped ceria samples implies that the ceria cubic structure is retained. FE-SEM analysis revealed that samples possess spherical morphology. Both the average crystallite sizes and the average particle diameters of the samples were found to occur within nano-range. UV-Vis analysis reveals that samples demonstrated excellent optical properties. The optical band gap of the undoped ceria was found to increase with doping 3% and 5% Ni, which could be due to Burstein- Moss effect. However, doping 1% Ni was found to reduce the optical band gap of the undoped ceria, which could be associated with the reduction of the average crystallite size and therefore, is regarded as the optimum dopant. EDX analysis confirms the presence of the cerium, oxygen as well as the expected doping concentrations of the Ni precursor. FTIR analysis shows the presence of O-H stretching vibrations in all samples. Therefore, these nanostructures with such enhanced properties could be utilized as potential materials in a number of electronic and catalytic applications.
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