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2Mo 2O 9 oxide ion conductor: A distribution function of relaxation times approach]]>

机译:<![CDATA [CDATA对LA 2 MO 2 O 9 氧化物离子导体:松弛时间的分布函数]]]>

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摘要

In this work we have studied the effect of grain boundary space charge on oxide ion conductivity of La2?xErxMo2O9(0.05?≤?x?≤?0.25) ionic conductors. Microstructure is studied by scanning electron microscopy and high resolution transmission electron microscopy. Impedance spectra are analyzed in the frame work of impedance spectroscopy genetic programming method. A distribution function of relaxation times model is obtained, which is comprised of two peaks and correlated with the contribution from grain and grain boundary conductivities. The activation energies obtained for both grain and grain boundary conductivities confirm thermally activated hopping of oxygen. Theoretical analysis is carried out to estimate the grain boundary space charge potential at different temperatures for all compositions. The depletion of oxygen vacancies in the space charge layer is also determined. Despite the fact that Er is an isovalent dopant, both the space charge potential and oxygen vacancies are found to be composition dependent. The increase in space charge potential is related to decrease in grain boundary conductivity.
机译:在这项工作中,我们研究了La2αxerxmo2O9(0.05≤≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤x≤1025)离子导体的氧化物离子电荷对氧化物离子电导率的影响。通过扫描电子显微镜和高分辨率透射电子显微镜研究微观结构。在阻抗光谱遗传遗传规划方法的帧间工作中分析阻抗光谱。获得弛豫时间模型的分布函数,其由两个峰组成,与谷物和晶界导电性的贡献相关。为晶粒和晶界导电性获得的激活能量确认热激活的氧气跳跃。进行理论分析以估计所有组合物的不同温度下的晶界空间电势。还确定了空间电荷层中的氧空位的耗尽。尽管ER是一种掺杂剂,但发现空间充电电位和氧空位都被发现成分依赖性。空间充电电位的增加与晶界电导率的降低有关。

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