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首页> 外文期刊>CERAMICS INTERNATIONAL >Microstructure and ionic conductivity properties of gadolinia doped ceria [Gd_xCe_(1-x)O_(2-x/2)] electrolytes for intermediate temperature SOFCs prepared by the polyol method
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Microstructure and ionic conductivity properties of gadolinia doped ceria [Gd_xCe_(1-x)O_(2-x/2)] electrolytes for intermediate temperature SOFCs prepared by the polyol method

机译:多元醇法制备的中温SOFC掺杂氧化ado的二氧化铈[Gd_xCe_(1-x)O_(2-x / 2)]电解质的微观结构和离子导电性能

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摘要

Gd_(0.1)Ce_(0.9)O_(1.95) and Gd_(0.2)Ce_(0.8)O_(1.9) powders were prepared through the polyol process without using any protective agent. Microstructural and physical properties of the samples were characterized with X-ray diffraction (XRD), scanning electron microscopy (SEM), thermogravimelry (TG) and impedance analysis methods. The results of the thermogravimetry/differential thermal analysis (TG/DTA) and XRD indicated that a single-phase fluoritc structure formed at the relatively low calcination temperature of 500 'C. The XRD patterns of the samples revealed that the crystallite size of the samples increased as calcination temperatures increased. The sintering behavior and ionic conductivity of pellets prepared from gadolinia doped ceria (GDC) powders, which were calcined at 500℃, were also investigated. The relative densities of the pellets, which were.sintered at temperatures above 1300℃. were higher than 95%. The results of the impedance spectroscopy revealed that the GDC-20 sample that was sintered at 1400℃ exhibited an ionic conductivity of 3.25 x 10~(-2)S cm~(-1) at 800℃ in air. This result clearly indicates that GDC powder with adequate ionic conductivity can be prepared through the polyol process at low temperatures.
机译:通过多元醇法制备Gd_(0.1)Ce_(0.9)O_(1.95)和Gd_(0.2)Ce_(0.8)O_(1.9)粉末,无需使用任何保护剂。用X射线衍射(XRD),扫描电子显微镜(SEM),热重心(TG)和阻抗分析方法对样品的微观结构和物理性能进行了表征。热重/差热分析(​​TG / DTA)和XRD的结果表明,在相对低的煅烧温度500℃下形成了单相荧光结构。样品的XRD图谱表明,样品的微晶尺寸随着煅烧温度的升高而增加。还研究了由氧化ado掺杂的二氧化铈(GDC)粉末制备的颗粒在500℃下煅烧的烧结行为和离子电导率。在高于1300℃的温度下烧结的粒料的相对密度。高于95%。阻抗谱分析结果表明,在1400℃烧结的GDC-20样品在800℃空气中的离子电导率为3.25 x 10〜(-2)S cm〜(-1)。该结果清楚地表明,可以通过多元醇方法在低温下制备具有足够的离子电导率的GDC粉末。

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