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首页> 外文期刊>Journal of the European Ceramic Society >Correlation between microstructure and electrical conductivity in composite electrolytes containing Gd-doped ceria and Gd-doped barium cerate
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Correlation between microstructure and electrical conductivity in composite electrolytes containing Gd-doped ceria and Gd-doped barium cerate

机译:掺二氧化铈和铈掺杂钡的复合电解质的微观结构与电导率的关系

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Composite electrolytes with nominal compositions, Ce_(0.8)Gd_(0.2)O_(1.9)+xBaO (x = 0.2 and 0.3), have been synthesized through the citrate route. Formation of two phases, namely Gd-doped ceria and Gd-doped barium cerate, has been confirmed through XRD and SEM studies. The impedance spectra show three distinct semi-circles, all originating from the composite electrolytes. In the temperature range 175-350 °C, the activation energies for the conductivity values extracted from the high frequency and intermediate frequency parts of the impedance spectra remains the same, irrespective of compositional and micro-structural variation. On the other hand, the activation energies for the conductivity values associated with the low frequency impedance spectra show a significant change with micro-structural variation. Solid oxide fuel cells constructed using these composite electrolytes exhibit a higher open circuit voltage compared to those based on single phase 20 mol% Gd-doped ceria.
机译:通过柠檬酸盐途径合成了标称组成为Ce_(0.8)Gd_(0.2)O_(1.9)+ xBaO(x = 0.2和0.3)的复合电解质。通过XRD和SEM研究已经证实了两相的形成,即掺Gd的二氧化铈和掺Gd的铈酸钡。阻抗谱显示出三个不同的半圆形,均来自复合电解质。在175-350°C的温度范围内,从阻抗谱的高频和中频部分提取的电导率值的活化能保持不变,而与成分和微观结构的变化无关。另一方面,与低频阻抗谱相关的电导率值的活化能随微结构变化显示出显着变化。与基于单相20 mol%掺Gd的二氧化铈的燃料电池相比,使用这些复合电解质构造的固体氧化物燃料电池表现出更高的开路电压。

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