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Nanostructure, Nanochemistry and Grain Boundary Conductivity of Yttria-doped Zirconia

机译:氧化钇氧化锆的纳米结构,纳米化学和晶界导电性

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This work was directed at a comprehensive study of the role of the nanostructure and nanochemistry on the transport properties of yttria-stabilized zirconia. Alumina additions lead to a decrease of σ_(gb) when the samples have clean grain boundaries, while σ_(gb) goes through a maximum in samples having glassy grain boundaries. The differences were attributed to the strong interaction between Al_2O_3 and SiO_2 impurities leading to a glassy phase depletion at the grain-boundaries, due to a change in wettability. Moreover, XPS analyses show that Si and Y segregate near these interfaces according to a kinetic demixing process, explaining why a faster cooling rate after sintering has a beneficial effect on σ_(gb).
机译:这项工作旨在综合研究纳米结构和纳米特性对氧化钇稳定的氧化锆的运输性能的综合研究。当样品具有清洁的晶界时,氧化铝添加导致σ_(gb)的减少,而σ_(gb)在具有玻璃晶界的样品中经过最大值。由于润湿性的变化,差异归因于Al_2O_3和SiO_3和SiO_2杂质之间的强相互作用导致晶界在晶界的玻璃相消耗。此外,XPS分析表明,根据动力学解析过程,Si和Y分离这些接口附近,解释了烧结后更快的冷却速率对σ_(GB)的有益效果。

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