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首页> 外文期刊>Journal of Materials Science >Fast diffusion in nanocrystalline ceramics prepared by ball milling
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Fast diffusion in nanocrystalline ceramics prepared by ball milling

机译:通过球磨制备的纳米晶陶瓷中的快速扩散

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Nanocrystalline materials can show enhanced diffusivity compared to their microcrystalline counterparts due to the large fraction of atoms or ions located in interfacial regions. In the case of ceramics, resulting properties with potential applications are, e.g., fast ionic conductivity, high mechanical creep rate and increased catalytic activity. Different nanocrystalline ceramic materials were prepared by high-energy ball milling of coarse grained source materials. The samples were characterized by XRD, TEM, BET method and IR spectroscopy. These measurements show that the primary crystallites form larger agglomerates with internal interfaces and that the reduction of the crystallite size is accompanied by a structural degradation of the surface zone. An example is the partial amorphization observed for LiBO2 by IR spectroscopy. The diffusivity and ion conductivity in these materials was studied by NMR relaxation, NMR line shape and impedance spectroscopies. It was possible to discriminate between highly mobile ions in the interfacial regions and immobile ions in the grains. In general diffusion in the nanocrystalline systems was found to be fast compared to that in the corresponding microcrystalline source materials. (C) 2004 Kluwer Academic Publishers.
机译:与微晶对应物相比,纳米晶材料可显示出增强的扩散性,这是由于位于界面区域的原子或离子占很大比例。在陶瓷的情况下,具有潜在用途的最终性能例如为快速离子电导率,高机械蠕变速率和增加的催化活性。通过对粗粒原料的高能球磨制备了不同的纳米晶陶瓷材料。用XRD,TEM,BET法和红外光谱对样品进行表征。这些测量结果表明,初级微晶形成具有内部界面的较大的附聚物,并且微晶尺寸的减小伴随着表面区域的结构退化。一个例子是通过IR光谱观察到的LiBO 2的部分非晶化。通过NMR弛豫,NMR线形和阻抗谱研究了这些材料中的扩散率和离子电导率。可以区分界面区域中的高迁移率离子和晶粒中的不可迁移离子。通常,发现与相应的微晶源材料相比,纳米晶系统中的扩散较快。 (C)2004 Kluwer学术出版社。

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