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In Situ Observation of Oxygen Vacancy Dynamics and Ordering in the Epitaxial LaCoO3 System

机译:原位观察氧空位动力学和外延Lavoo3系统中的排序

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Vacancy dynamics and ordering underpin the electrochemical functionality of complex oxides and strongly couple to their physical properties. In the field of the epitaxial thin films, where connection between chemistry and film properties can be most clearly revealed, the effects related to oxygen vacancies are attracting increasing attention. In this article, we report a direct, real-time, atomic level observation of the formation of oxygen vacancies in the epitaxial LaCoO3 thin films and heterostructures under the influence of the electron beam utilizing scanning transmission electron microscopy (STEM). In the case of LaCoO3/SrTiO3 superlattice, the formation of the oxygen vacancies is shown to produce quantifiable changes in the interatomic distances, as well as qualitative changes in the symmetry of the Co sites manifested as off-center displacements. The onset of these changes was observed in both the [100](pc) and [110](pc) orientations in real time. Additionally, annular bright field images directly show the formation of oxygen vacancy channels along [110](pc) direction. In the case of 15 u.c. LaCoO3 thin film, we observe the sequence of events during beam-induced formation of oxygen vacancy ordered phases and find them consistent with similar processes in the bulk. Moreover, we record the dynamics of the nucleation, growth, and defect interaction at the atomic scale as these transformations happen. These results demonstrate that we can track dynamic oxygen vacancy behavior with STEM, generating atomic-level quantitative information on phase transformation and oxygen diffusion.
机译:空位动态和排序依附于复合氧化物的电化学功能,强烈耦合到其物理性质。在外延薄膜的领域中,可以最清楚地揭示化学和薄膜特性之间的连接,与氧空位有关的效果是吸引越来越多的关注。在本文中,我们在利用扫描透射电子显微镜(茎)的影响下,在外延Lavoo3薄膜和异质结构下报告了一种直接,实时的原子水平观察氧空位的形成和异质结构。在Lacoo3 / srtio3超晶格的情况下,显示氧空位的形成,以产生间隙距离的可量化变化,以及表现为偏离中心位移的CO位点的对称性的定性变化。在[100](PC)和[110](PC)方向上,在实时观察这些变化的开始。另外,环形亮场图像沿[110](PC)方向直接显示氧空位通道的形成。在15岁的情况下。 LaCoo3薄膜,我们观察光束诱导的氧空位排序阶段期间的事件序列,并发现它们一致于散装中的类似过程。此外,随着这些转变发生的,我们记录了原子尺度的核切割,生长和缺陷相互作用的动态。这些结果表明,我们可以用茎追踪动态氧空位行为,产生关于相变和氧扩散的原子水平定量信息。

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