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首页> 外文期刊>Nanotechnology >Direct observation of oxygen atoms in rutile titanium dioxide by spherical aberration corrected high-resolution transmission electron microscopy
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Direct observation of oxygen atoms in rutile titanium dioxide by spherical aberration corrected high-resolution transmission electron microscopy

机译:球差校正高分辨率透射电子显微镜直接观察金红石型二氧化钛中的氧原子

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摘要

We have developed a spherical aberration corrected transmission electron microscopy (C-s-corrected TEM) technique that allows us to obtain clearer images in real space than ever before. We applied this technique to titanium oxide, in which light elements such as oxygen are difficult to observe using TEM because of its small cross section and electronic damage. In the present study, we successfully observed oxygen atoms in rutile TiO2. In addition, this direct observation of oxygen atoms enabled us to study the Magneli structure (TinO2n-1), which is caused by oxygen vacancies. These vacancies caused an atomic relaxation of the titanium and oxygen atoms. The relaxed atoms formed a characteristic shear structure of rutile titanium dioxide phase. This shear structure of the Magneli structure (TinO2n-1) was visualized with a spatial resolution of 0.119 nm. At the same time, the selected area diffraction ( SAD) pattern of the defect structure was obtained. Additional spots were shown inside the rutile [110] spot. We made structural models of the shear structure and simulated the diffraction pattern and images using a multi-slice simulation. Additional spots in the simulated diffraction patterns accurately reconstructed the experimental data. We also considered the possibility of the real-space analysis of local structures using spherical aberration corrected transmission electron microscopy.
机译:我们已经开发了球差校正的透射电子显微镜(C-s校正的TEM)技术,该技术使我们能够在现实空间中获得比以往更清晰的图像。我们将这种技术应用于氧化钛,在该氧化钛中,由于横截面小和电子损坏,因此难以使用TEM观察到轻元素。在本研究中,我们成功地观察了金红石型TiO2中的氧原子。此外,对氧原子的这种直接观察使我们能够研究由氧空位引起的马涅利结构(TinO2n-1)。这些空位引起钛和氧原子的原子弛豫。弛豫的原子形成了金红石型二氧化钛相的特征剪切结构。 Magneli结构(TinO2n-1)的这种剪切结构以0.119 nm的空间分辨率可视化。同时,获得了缺陷结构的选定区域衍射(SAD)图。金红石[110]点内显示了其他点。我们制作了剪切结构的结构模型,并使用多层模拟对衍射图案和图像进行了模拟。模拟衍射图中的其他斑点可准确地重建实验数据。我们还考虑了使用球差校正透射电子显微镜对局部结构进行实空间分析的可能性。

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