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首页> 外文期刊>Physica Status Solidi. C, Conferences and critical reviews >EXAFS and XRD studies of nanocrystalline cerium oxide: the effect of preparation method on the microstructure
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EXAFS and XRD studies of nanocrystalline cerium oxide: the effect of preparation method on the microstructure

机译:纳米二氧化铈的EXAFS和XRD研究:制备方法对微观结构的影响

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摘要

There is considerable interest in nanocrystalline materials due to their unusual properties, such as enhanced ionic conductivity in the case of nanocrystalline ionic solids. This has potential commercial applications, particularly for oxide ion conductors. However, a detailed knowledge of the microstructure is important in fully understanding the novel properties exhibited by nanocrystalline materials. The final microstructure of a material is dependent on the preparation method used, for example, sol-gel and ball-milling methods are commonly used in the preparation of nanocrystalline oxides. Additionally, there is a problem in maintaining the materials in nanocrystalline form when they are subjected to elevated temperatures. We have been exploring strategies to restrict the growth of nanocrystalline oxides and have found that adding a small amount of an inert material, e.g. SiO_2 or Al_2O_3, is particularly effective. We will report XRD and EXAFS studies of nanocrystalline ceria prepared by sol-gel, sol-gel pinned and ball-milling methods and the effect of preparation method on the final microstructure.
机译:由于纳米晶材料的不同寻常的性质,例如在纳米晶态离子固体的情况下增强的离子传导性,因此对纳米晶材料有相当大的兴趣。这具有潜在的商业应用,特别是对于氧化物离子导体。然而,对微观结构的详细了解对于充分理解纳米晶体材料表现出的新颖特性很重要。材料的最终微观结构取决于所用的制备方法,例如,溶胶-凝胶法和球磨法通常用于制备纳米晶体氧化物。另外,当材料经受高温时,存在将材料保持为纳米晶形式的问题。我们一直在探索限制纳米晶氧化物生长的策略,并发现添加少量的惰性材料,例如碳酸氢钠。 SiO_2或Al_2O_3特别有效。我们将报告通过溶胶-凝胶,溶胶-凝胶固定和球磨法制备的纳米晶铈矿的XRD和EXAFS研究,以及制备方法对最终微结构的影响。

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