Synthesis and characterization of Gd and Er co-doped ceria as solid electrolyte for IT-SOFC via solid state method

A. Hardian, I. Ismunandar
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Abstract

Ceria has higher conductivity than the conventional SOFC electrolyte, yttria-stabilized zirconia (YZS) but has the drawback of measurable electronic conductivity, particularly at high temperatures. The aims of this work research are to synthesize several Gd and Er co-doped ceria materials as solid electrolyte for Intermediate Temperature Solid Oxide Fuel Cell (IT-SOFC) and to obtain the correlation between the average ionic radius of dopants and the value of their conductivity. Three set material have been choosen as target of this research. They are Ce1−x−yGdxEryO2−z (CeGdEr); Ce1−x−yGdxDyyO2−z (CeGdDy); and Ce1−x−yGdxNdyO2−z (CeGdNd). In this paper, one set material of CeGdEr have been synthesized, they are Ce90Gd5Er5, Ce85Gd5Er10, Ce85Gd10Er5, and Ce80Gd10Er10. Their structures have been investigated using X-Ray Diffraction (XRD) and refined it using Le Bail method. All material have the similar structure that is cubic structure with space group Fm3m, but only a little differences at their lattice parameter. The lattice parameter for Ce90Gd5Er5, Ce85Gd5Er10, Ce85Gd10Er5, and Ce80Gd10Er10 are 5,406(9) Å; 5,434(1) Å; 5,434(1) Å; and 5,430(2) Å, respectively. Moreover, Ce90Gd5rEr5 morphology have been investigated using Scanning Electron Microscope (SEM). The result is Ce90G5Er5 still has pore probably due to the low temperature of sintering. The result of EDS characterization show that there is no impurity in Ce90Gd5Er5 material.
Gd和Er共掺杂氧化铈作为IT-SOFC固体电解质的固态法合成及表征
相比传统的SOFC电解质,氧化钇稳定氧化锆(YZS),铈具有更高的导电性,但其缺点是无法测量电子导电性,特别是在高温下。本研究的目的是合成几种Gd和Er共掺杂的二氧化铈材料作为中温固体氧化物燃料电池(IT-SOFC)的固体电解质,并获得掺杂剂的平均离子半径与其电导率值之间的关系。本文选取了三种固定材料作为研究对象。它们是Ce1−x−yGdxEryO2−z (CeGdEr);x Ce1−−yGdxDyyO2−z (CeGdDy);Ce1−x−yGdxNdyO2−z (CeGdNd)。本文合成了Ce90Gd5Er5、Ce85Gd5Er10、Ce85Gd10Er5、Ce80Gd10Er10等一套ceegder材料。用x射线衍射(XRD)对其结构进行了研究,并用勒拜耳法对其进行了细化。所有材料都具有相似的结构,都是空间群Fm3m的立方结构,只是它们的晶格参数略有不同。Ce90Gd5Er5、Ce85Gd5Er10、Ce85Gd10Er5和Ce80Gd10Er10的晶格参数为5406 (9)Å;5434 (1);5434 (1);和5430 (2)Å。利用扫描电镜(SEM)研究了Ce90Gd5rEr5的形貌。结果表明,Ce90G5Er5仍有孔隙存在,这可能是由于烧结温度较低所致。EDS表征结果表明,Ce90Gd5Er5材料中没有杂质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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