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Decomposition of 8.5 mol. percent Y_2O_3-doped zirconia and its contribution to the degradation of ionic conductivity

机译:8.5 molY_2O_3掺杂氧化锆的分解及其对离子电导率降解的贡献

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摘要

Transmission electron microscopy (TEM) in combination with energy-dispersive X-ray spectroscopy and electron energy loss spectroscopy was applied to analyze the microstructure and the local chemical composition of as-sintered and aged Y_2O_3-doped ZrO_2 (YDZ) thick-film substrates with yttria contents of 8.5 mol. percent (8YDZ) and 10 mol. percent (10YDZ). Selected-area electron diffractionand dark-field TEM imaging show nanoscale precipitates of the tetragonal YDZ phase, which are coherently embedded in grains consisting of the cubic phase. A distinct coarsening of the tetragonal regions is observed after 2500 h annealing of 8YDZ at 950 deg C in an oxidizing atmosphere. This coarsening is accompanied by decomposition on the cationic sublattice on the nanoscale, leading to the depletion of yttrium in the tetragonal regions. The decomposition is discussed in terms of spinodal decomposition which takes place even at a high doping concentration of 8.5 mol. percent Y_2O_3.
机译:采用透射电子显微镜(TEM)结合能量色散X射线光谱和电子能量损失谱分析了钇含量为8.5 mol%(8YDZ)和10 mol%(10YDZ)的烧结和时效Y_2O_3 ZrO_2(YDZ)厚膜基板的微观结构和局部化学成分。选择区域电子衍射和暗场透射电镜成像显示四方YDZ相的纳米级沉淀物,这些沉淀物相干地嵌入由立方相组成的晶粒中。在氧化气氛中将8YDZ在950°C下退火2500小时后,观察到四方区域的明显粗化。这种粗化伴随着纳米尺度上阳离子亚晶格的分解,导致四方区域钇的耗尽。从棘节分解的角度来讨论分解,即使在 8.5 mol% Y_2O_3的高掺杂浓度下也会发生。

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