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Microstructural effects on the electrical properties of grain boundary Fe-doped LSGM

机译:晶界Fe掺杂LSGM电性能的微观结构效应

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Mixed conductors based on grain boundary Fe-doped La0.95Sr0.05Ga0.90Mg0.10O3-δ (LSGM) ceramics were obtained by selectively doping the grain boundaries with Fe. This was achieved using LaFeO3-δlayers screen-printed onto LSGM, after annealing at high temperature in air for several hours to promote Fe diffusion into LSGM. The influence of the number of impregnation cycles, temperature of impregnation and microstructure of the host LSGM was evaluated by impedance spectroscopy and oxygen permeability. The impedance spectra consist of high and low frequency semicircles, ascribed to bulk and grain boundaries. The amplitude of both contributions decreases with increasing impregnation temperature and time, suggesting the onset of electronic conduction along grain boundaries. The effect is stronger for ceramics with larger grain size. The observed trends are fully consistent with estimates of p-type electronic conductivity obtained from oxygen permeability measurements using a simplified electrochemical cell.
机译:通过选择性地掺杂用Fe选择晶界,获得基于晶界Fe-掺杂La0.95SR0.05Ga0.90mg0.1003-δ(LSGM)陶瓷的混合导体。这是使用Lafeo3-ΔLayers筛选到LSGM上的LSGM,在空气中的高温下进行几个小时来实现,以促进Fe扩散到LSGM中。通过阻抗光谱和透氧性评价浸渍循环次数,浸渍温度和宿主LSGM的微观结构的影响。阻抗光谱由高频率的半圆组成,归因于散装和晶界。随着浸渍温度和时间的增加,两种贡献的幅度降低,表明沿晶界的电子传导开始。晶粒尺寸较大的陶瓷效果更强。观察到的趋势与使用简化的电化学电池的氧气渗透测量获得的p型电子电导率的估计完全一致。

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