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SOFC Cathodes Composed of LaNi_0.6Fe_0.4O_3 and Pr-Doped CeO_2

机译:LaNi_0.6Fe_0.4O_3和Pr掺杂CeO_2组成的SOFC阴极

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摘要

Solid oxide fuel cell (SOFC) cathodes consisting of LaNi_0.6Fe_0.4O_3 and Ce(Ln)O_2-δ (Ln = Pr, Sm, Gd) were investigated with the ac impedance method. The interface resistance of cathodes with Pr-doped ceria was approximately one-third of those with Sm- and Gd-doped ceria. Cathodes with Pr-doped ceria had frequency peaks in the imaginary part impedance spectra that were 100 times lower than those for cathodes without Pr-doped ceria. This low-frequency peak for the Pr-doped ceria was caused by its large interface capacitance. This suggests that triple-phase boundary is present over the entire surface of the Pr-doped ceria particles.
机译:用交流阻抗法研究了由LaNi_0.6Fe_0.4O_3和Ce(Ln)O_2-δ(Ln = Pr,Sm,Gd)组成的固体氧化物燃料电池(SOFC)阴极。掺Pr的二氧化铈的阴极的界面电阻约为掺Sm和Gd的二氧化铈的阴极的三分之一。掺杂有Pr的二氧化铈的阴极在虚部阻抗谱中具有比未掺杂Pr的二氧化铈的阴极低100倍的频率峰值。 Pr掺杂的二氧化铈的低频峰值是由于其较大的界面电容引起的。这表明在Pr掺杂的二氧化铈颗粒的整个表面上存在三相边界。

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