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首页> 外文期刊>ACS nano >Dislocations Accelerate Oxygen Ion Diffusion in La08Sr0.2MnO3 Epitaxial Thin Films
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Dislocations Accelerate Oxygen Ion Diffusion in La08Sr0.2MnO3 Epitaxial Thin Films

机译:脱位在La08SR0.2MNO3外延薄膜中加速氧离子扩散

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摘要

Revealing whether dislocations accelerate oxygen ion transport is important for providing abilities in tuning the ionic conductivity of ceramic materials. In this study, we report how dislocations affect oxygen ion diffusion in Sr-doped LaMnO3 (LSM), a model perovskite oxide that serves in energy conversion technologies. LSM epitaxial thin films with thicknesses ranging from 10 nm to more than 100 nm were prepared by pulsed laser deposition on single-crystal LaAlO3 and SrTiO3 substrates. The lattice mismatch between the film and substrates induces compressive or tensile in-plane strain in the LSM layers. This lattice strain is partially reduced by dislocations, especially in the LSM films on LaAlO3. Oxygen isotope exchange measured by secondary ion mass spectrometry revealed the existence of at least two very different diffusion coefficients in the LSM films on LaAlO3. The diffusion profiles can be quantitatively explained by the existence of fast oxygen ion diffusion along threading dislocations that is faster by up to 3 orders of magnitude compared to that in LSM bulk.
机译:揭示脱位是否加速氧离子转运对于提供调节陶瓷材料离子电导率的能力是重要的。在这项研究中,我们报告了脱位如何在SR掺杂的兰诺3(LSM)中影响氧离子扩散,该钙钛矿氧化物在能量转换技术中。通过脉冲激光沉积在单晶LaALO3和SRTIO3基板上通过脉冲激光沉积来制备具有10nm至大于100nm的厚度的LSM外延薄膜。薄膜和基板之间的晶格不匹配在LSM层中引起压缩或拉伸面内应变。该晶格菌株通过位错部分降低,特别是在Laalo3上的LSM薄膜中。通过二次离子质谱法测量的氧同位素交换显示LAALO3上的LSM膜中的至少两个非常不同的扩散系数的存在。通过沿螺纹位错的存在快速氧离子扩散,可以定量解释扩散轮廓,与LSM批量相比,螺纹脱位沿螺纹位移速度最高300倍。

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