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Origin of fast oxide ion diffusion along grain boundaries in Sr-doped LaMnO3

机译:SR掺杂兰诺3中晶界沿晶界的快速氧化离子扩散的起源

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摘要

The prospect of significantly enhanced oxide ion diffusion along grain boundaries in Sr-doped LaMnO3 (LSM) was investigated by means of density functional theory calculations applied to a sigma 5 (3 1 0)[0 0 1] grain boundary. The structure of the grain boundary was optimized by rigid body translation, and segregation energies were calculated for oxygen vacancies and Sr-acceptors. Two potentially fast diffusion paths were identified along the grain boundary core based on the interconnectivity between neighbouring sites with a strong tendency for segregation of oxygen vacancies. The migration barriers for these paths, obtained with the nudged elastic band method, amounted to about 0.6 eV. Based on the obtained migration barriers and concentrations of oxygen vacancies for the relevant core sites, the grain boundary diffusion coefficient was estimated to be enhanced by 3 to 5 orders of magnitude relative to the bulk in the temperature range 500-900 degrees C. Space-charge effects were determined to be quite insignificant for the transport properties of LSM grain boundaries.
机译:通过密度泛函理论计算研究了沿SR掺杂兰诺3(LSM)中沿晶界的显着增强的氧化离子扩散的前景。施加到Sigma 5(310)[0 0 1]晶界。通过刚体平移优化晶界的结构,并计算用于氧空位和SR受体的分离能量。基于邻近位点之间的互连,沿着晶界核来识别两个潜在的快速扩散路径,具有强的呼吸缺氧的偏离倾向。用闪烁的弹性带法得到的这些路径的迁移屏障量为约0.6eV。基于所获得的迁移障碍和相关核心位点的氧空位浓度,估计晶界扩散系数相对于温度范围为500-900摄氏度的温度范围的散装量增加3至5个数量级 - 确定电荷效应对于LSM晶界的运输性能非常微不足道。

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