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在钙钛矿氧化物异质界面处进行八面体畸变的原子级观察。

Atomic level observation of octahedral distortions at the perovskite oxide heterointerface.

机构信息

Institute for Chemical Research, Kyoto University, Uji, Kyoto, Japan.

出版信息

Sci Rep. 2013;3:2214. doi: 10.1038/srep02214.

Abstract

For perovskite oxides, ABO3, slight octahedral distortions have close links to functional properties. While perovskite oxide heterostructures offer a good platform for controlling functionalities, atomistic understanding of octahedral distortion at the interface has been a challenge as it requires precise measurements of the oxygen atomic positions. Here we demonstrate an approach to clarify distortions at an atomic level using annular bright-field imaging in aberration-corrected scanning transmission electron microscopy, which provides precise mappings of cation and oxygen atomic positions from distortion-minimized images. This technique revealed significant distortions of RuO6 and ScO6 octahedra at the heterointerface between a SrRuO3 film and a GdScO3 substrate. We also found that structural mismatch was relieved within only four unit cells near the interface by shifting the oxygen atomic positions to accommodate octahedral tilt angle mismatch. The present results underscore the critical role of the oxygen atom in the octahedral connectivity at the perovskite oxide heterointerface.

摘要

对于钙钛矿氧化物 ABO3,八面体的微小变形与功能特性密切相关。虽然钙钛矿氧化物异质结构为控制功能提供了良好的平台,但由于需要精确测量氧原子的位置,因此界面处八面体变形的原子级理解一直是一个挑战。在这里,我们展示了一种使用校正像差的扫描透射电子显微镜中的环形明场成像来澄清原子水平上的变形的方法,该方法从最小变形图像中提供了阳离子和氧原子位置的精确映射。该技术揭示了 SrRuO3 薄膜和 GdScO3 衬底之间异质界面处 RuO6 和 ScO6 八面体的显著变形。我们还发现,通过将氧原子位置移动以适应八面体倾斜角失配,仅在界面附近的四个单元中就缓解了结构不匹配。目前的结果强调了氧原子在钙钛矿氧化物异质界面处八面体连接中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a3b/3712312/f9b1cb15ba13/srep02214-f1.jpg

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