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Effects of grain-boundary diffusions and modifications on the electrical conductivities of YSZ coatings with columnar microstructure

机译:晶界扩散和变质对具有柱状微观结构的YSZ涂层电导率的影响

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摘要

The YSZ coatings with nanoctystalline columnar structure were prepared by magnetron sputtering and then dip-coated by a Fe-containing sol. The elements from sol decomposition products were diffused at 600 degrees C for 2 h to modify the columnar grain boundaries. The electrical conductivities of Fe-modified YSZ coating are predominantly ionic and 6-7 times higher than those of the as-deposited coating. The electrical conductivity increment is explained on the scavenging effects of diffused Fe2O3 on the intergranular siliceous phase based on the fact that a strong segregation of Fe and Si into the triple grain junctions is verified by EDS analysis. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过磁控溅射制备具有纳米结晶柱状结构的YSZ涂层,然后用含铁溶胶浸涂。溶胶分解产物中的元素在600摄氏度下扩散2小时,以改变柱状晶界。 Fe改性YSZ涂层的电导率主要是离子电导率,比沉积时的电导率高6-7倍。通过EDS分析证实了Fe和Si强烈偏析进入三重晶界的事实,解释了电导率增量是由于Fe2O3扩散对晶间硅质相的清除作用所致。 (C)2014 Elsevier B.V.保留所有权利。

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