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Evolution of microstructure strain and physical properties in oxide nanocomposite films

机译:氧化物纳米复合薄膜的微观结构应变和物理性能的演变

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摘要

We, using LSMO:ZnO nanocomposite films as a model system, have studied the effect of film thickness on the physical properties of nanocomposites. It shows that strain, microstructure, as well as magnetoresistance strongly rely on film thickness. The magnetotransport properties have been fitted by a modified parallel connection channel model, which is in agreement with the microstructure evolution as a function of film thickness in nanocomposite films on sapphire substrates. The strain analysis indicates that the variation of physical properties in nanocomposite films on LAO is dominated by strain effect. These results confirm the critical role of film thickness on microstructures, strain states, and functionalities. It further shows that one can use film thickness as a key parameter to design nanocomposites with optimum functionalities.
机译:我们以LSMO:ZnO纳米复合材料薄膜为模型系统,研究了薄膜厚度对纳米复合材料物理性能的影响。它表明应变,微观结构以及磁阻强烈依赖于膜厚度。磁传输特性已通过修改后的平行连接通道模型进行拟合,该模型与蓝宝石衬底上纳米复合膜中微结构的变化随膜厚的变化而一致。应变分析表明,LAO上纳米复合膜物理性能的变化主要由应变效应决定。这些结果证实了膜厚度对微结构,应变状态和功能性的关键作用。它进一步表明,可以将膜厚作为关键参数来设计具有最佳功能的纳米复合材料。

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