首页> 外文期刊>Solid state ionics >Development and characterization of a quasi-ternary diagram based on La0.8Sr0.2(Co,Cu,Fe)O-3 oxides in view of application as a cathode contact material for solid oxide fuel cells
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Development and characterization of a quasi-ternary diagram based on La0.8Sr0.2(Co,Cu,Fe)O-3 oxides in view of application as a cathode contact material for solid oxide fuel cells

机译:鉴于La0.8Sr0.2(Co,Cu,Fe)O-3氧化物的准三元图的开发和表征,考虑作为固体氧化物燃料电池的阴极接触材料

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摘要

Oxides resulting from discrete changes in composition within the quasi-ternary system La0.8Sr0.2CuO2.4(sic)La0.8Sr0.2CoO3 (- delta)-La0.8Sr0.2FeO3 (- delta) were investigated under similar experimental conditions with the objective of obtaining an overview of the variation of the relevant properties for possible applications as cathode contact layer in SOFCs. Twenty-two oxide compositions within this system were systematically selected and synthesized under identical conditions by the Pechini method. The distribution of the different crystallographic phases at 1050 degrees C within this quasi-ternary phase diagram, the DC electrical conductivity at 800 degrees C and the thermal expansion coefficients are presented. Perovskites of different compositions issued from this ternary diagram were tested as cathode contact material between an La0.8Sr0.2FeO3 cathode and a Crofer22APU interconnect by resistance measurements at 800 degrees C. The application of a MnCo1.9Fe0.1O4 spinel protection reduced the interfacial reaction between the Crofer22APU and the cathode contact material. Electrical resistance measurements at 800 degrees C in air up to 1000 h and the analysis by scanning electron microscopy/energy-dispersive X-ray spectroscopy of the sample cross-sections were carried out to verify the Surface stability and the electrical performance.
机译:在相似的实验条件下,研究了由准三元体系La0.8Sr0.2CuO2.4(sic)La0.8Sr0.2CoO3(-delta)-La0.8Sr0.2FeO3(-delta)中成分离散变化产生的氧化物。目的是获得有关可能用作SOFC阴极接触层的相关特性变化的概述。在相同的条件下,通过Pechini方法系统地选择和合成了该系统中的22种氧化物。给出了该准三元相图中1050摄氏度下不同结晶相的分布,800摄氏度下的直流电导率和热膨胀系数。通过在800摄氏度下的电阻测量,测试了由该三元图发出的不同组成的钙钛矿作为La0.8Sr0.2FeO3阴极和Crofer22APU互连之间的阴极接触材料。MnCo1.9Fe0.1O4尖晶石保护层的应用降低了界面反应在Crofer22APU和阴极接触材料之间。进行了800摄氏度的空气中长达1000小时的电阻测量,并通过扫描电子显微镜/能量色散X射线光谱法对样品横截面进行了分析,以验证表面稳定性和电性能。

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