首页> 外文期刊>International journal of hydrogen energy >Long term behaviors of La_(0.8)Sr_(0.2)MnO_3 and La_(0.6)Sr_(0.4)Go_(0.2)Fe_(0.8)O_3 as cathodes for solid oxide fuel cells
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Long term behaviors of La_(0.8)Sr_(0.2)MnO_3 and La_(0.6)Sr_(0.4)Go_(0.2)Fe_(0.8)O_3 as cathodes for solid oxide fuel cells

机译:La_(0.8)Sr_(0.2)MnO_3和La_(0.6)Sr_(0.4)Go_(0.2)Fe_(0.8)O_3作为固体氧化物燃料电池的阴极的长期行为

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摘要

This work studies the electrochemical performance and stability of La_(0.8)Sr_(0.2)MnO_3 (LSM) and La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_3 (LSCF) cathodes in a AISI441 interconnect/cathode/YSZ electrolyte half-cell configuration at 800 ℃ for 500 h. Ohmic resistance and polarization resistance of the cathodes are analyzed by deconvoluting the electrochemical impedance spectroscopy (EIS) results. The LSM cathode has much higher resistance than the LSCF electrode even though the respective cathode resistance either decreases or stays stable over the long term thermal treatment. During the 500 h thermal treatment, dramatic elemental distribution changes influence the electrochemical behaviors of the cathodes. Chromium diffusion from the interconnect into the LSM electrode at triple phase boundaries (TPBs) leads to segregation of Sr away from La and Mn. For the LSCF cathode, Sr and Co segregation is dominant. The fundamental processes at the TPBs are proposed. Overall, LSCF is a much preferred cathode material because of its much smaller resistance for the 500 h thermal treatment time.
机译:这项工作研究了AISI441互连/阴极/中La_(0.8)Sr_(0.2)MnO_3(LSM)和La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_3(LSCF)阴极的电化学性能和稳定性YSZ电解质半电池配置在800℃下持续500 h。通过反卷积电化学阻抗谱(EIS)结果分析阴极的欧姆电阻和极化电阻。即使各自的阴极电阻在长期热处理过程中降低或保持稳定,LSM阴极的电阻也比LSCF电极高得多。在500小时的热处理过程中,元素的剧烈变化会影响阴极的电化学行为。铬从互连在三相边界(TPB)处扩散到LSM电极中导致Sr从La和Mn偏析。对于LSCF阴极,Sr和Co偏析占主导地位。提出了城规会的基本程序。总体而言,LSCF是首选的阴极材料,因为在500 h的热处理时间内它的电阻小得多。

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