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Role of temperature and oxygen content on structural and electrical properties of LaBaCo2O5+δ thin films

机译:温度和氧含量对LaBaCo2O5 +δ薄膜结构和电性能的影响

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摘要

The role of temperature and the oxygen content in the structural transformation and electrical conductivity of epitaxial double perovskite LaBaCo2O5+δ (0≤ δ ≤ 1) thin films was systematically investigated. Reciprocal space mapping and ω-2θ x-ray diffraction performed at different temperatures in vacuum indicate that oxygen vacancies in the films become ordered at high temperature in a reducing environment. The changes of the oxygen content and the degree of oxygen vacancy ordering in the films result in a strong in-plane anisotropic lattice deformation and a large thermal expansion coefficient along the c-axis direction. The electrical conductivity measurements reveal that these behaviors are related to the degree of oxygen vacancy formation and lattice deformation in the films.
机译:系统研究了温度和氧含量在外延双层钙钛矿LaBaCo2O5 +δ(0≤δ≤1)薄膜的结构转变和导电率中的作用。在真空中不同温度下进行的相互空间映射和ω-2θx射线衍射表明,在还原性环境中,高温下薄膜中的氧空位变得有序。膜中的氧含量和氧空位有序度的变化导致强的面内各向异性晶格变形和沿c轴方向的大的热膨胀系数。电导率测量表明,这些行为与薄膜中氧空位形成的程度和晶格变形有关。

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