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Ca2+ and Sr2+ co-doped ceria/carbonates nanocomposites for low temperature solid oxide fuel cells: Composite effect

机译:用于低温固体氧化物燃料电池的Ca2 +和Sr2 +共掺杂的氧化铈/碳酸盐纳米复合材料:复合效应

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摘要

A series of co-doped ceria based nanocomposites consisting of Ce0.93Ca0.05Sr0.02O1.93 (CC5S2) and binary carbonates mixture Li2CO3-Na2CO3 (LNCO) have been prepared as functional solid electrolytes for low temperature solid oxide fuel cells (LT-SOFCs). All the samples have been characterized with respect to their thermal behavior, phase, microstructure and electrical conductivity. Single phase formation has been confirmed by X-ray diffraction. In the composites, carbonates are present in the amorphous state. Micrographs show the percolafive network of both the phases. Impedance analysis has been used to study the conduction mechanism in the composites. A sudden increase in the conductivity has been observed in all the composites. This is attributed to a superionic transition at the interfaces. Conductivity increases with increasing carbonate content. Composition, CC5S2/35LNCO has the highest conductivity, 0.27 S cm(-1) at 500 degrees C with an activation energy of conduction 0.30 eV. A small value of activation energy indicates the interfacial conduction of the ions in the composites. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:已制备了一系列由Ce0.93Ca0.05Sr0.02O1.93(CC5S2)和二元碳酸盐混合物Li2CO3-Na2CO3(LNCO)组成的共掺杂二氧化铈基纳米复合材料,作为低温固体氧化物燃料电池(LT- SOFC)。所有样品均已根据其热性能,相,微结构和电导率进行了表征。单相形成已通过X射线衍射确认。在复合物中,碳酸盐以非晶态存在。显微照片显示了这两个阶段的完整网络。阻抗分析已用于研究复合材料中的导电机理。在所有复合物中都观察到电导率突然增加。这归因于界面上的超离子跃迁。电导率随碳酸盐含量的增加而增加。组成CC5S2 / 35LNCO具有最高的电导率,在500摄氏度时为0.27 S cm(-1),激活能量为0.30 eV。活化能的值较小表明复合物中离子的界面传导。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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