Grain-size dependence of electrolytic properties in 25 at. % yttrium doped ceria solid electrolytes

被引:0
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作者
Ou, Ding Rong
Mori, Toshiyuki
Ye, Fei
Zou, Jin
Drennan, John
机构
关键词
y-doped ceria; solid electrolyte; microstructure; TEM; fuel cell application;
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中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The grain size dependence of electrolytic properties in 25 at.% yttrium doped ceria was investigated. The sintered bodies were prepared from fine Y0.25Ce0.75O1.875 powders synthesized by carbonate co-precipitation method By using sintering temperature in range of 950 degrees- 1400 degrees C, the average grain size of electrolytes varied from 90 nm to 0.9 mu m. The conductivity of samples with different grain size was determined by dc three-point measurements at 400 degrees C - 600 degrees C. Then the activation energy was calculated from the data of electrical conductivity. Grain-size dependence was observed on the plots of conductivity vs. average grain size. As the grain size decreased from 0.9 mu m to 0.3 mu m, the conductivity decreased and the activation energy increased. This result was consistent with previous reports and could be explained by the space-charge-layer model. However, the conductivity increased while the grain size decreased from 0.3 mu m to 90 nm. Correspondingly, the activation energy decreased To clarify the mechanism of this phenomenon, the microstructure of samples was observed using TEM. Nano-sized domains inside the grains were observed on the high resolution images. Their size and amount were reduced as the grain size decreased It is possible that the abnormal increase in conductivity at fine grain size (< 0.3 mu m) was partly contributed by the changes in nano-sized domains.
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页码:891 / 893
页数:3
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