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Copper and iron precipitates in thermochemically reduced yttria-stabilized zirconia crystals

机译:热化学还原的氧化钇稳定的氧化锆晶体中的铜和铁沉淀

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摘要

Thermochemical reduction (TCR) at 2173 K has been performed on nominally pure yttria-stabilized zirconia crystals. After TCR the crystals become opaque owing to a very intense optical absorption band centred at 2.64 eV. Analytical transmission electron microscopy studies have shown that both copper and iron impurity precipitates are present. Colloids with different sizes and shapes are inhomogeneously distributed and both large and small precipitates are observed. Most of the large precipitates are elongated and irregular shaped, with an average dimension of 130 nm * 30 nm; they all contain copper. Exclusively copper and exclusively iron contents can be found in different parts of the same precipitate, an observation that is compatible with the fact that copper and iron are inmiscible. Smaller precipitates, with an average size of about 5 nm, are usually iron rich or copper rich.
机译:已经对名义上纯的氧化钇稳定的氧化锆晶体进行了2173 K的热化学还原(TCR)。在TCR之后,由于以2.64 eV为中心的非常强的光吸收带,晶体变得不透明。分析型透射电子显微镜研究表明,铜和铁杂质沉淀物均存在。具有不同大小和形状的胶体不均匀分布,并且观察到大小沉淀物。大多数大的沉淀物是细长的和不规则形状的,平均尺寸为130 nm * 30 nm。它们都含有铜。在同一沉淀物的不同部分可以发现仅铜和仅铁的含量,这一观察结果与铜和铁互溶的事实是相符的。平均粒径约为5 nm的较小沉淀物通常富含铁或富含铜。

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