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Three-dimensional analysis of Eu dopant atoms in Ca-alpha-SiAlON via through-focus HAADF-STEM imaging

机译:通过聚焦HAADF-STEM成像通过聚焦欧盟掺杂原子的三维分析

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Three-dimensional (3D) distributional analysis of individual dopant atoms in materials is important to development of optical, electronic, and magnetic materials. In this study, we adopted through-focus high-angle annular dark-field (HAADF) imaging for 3D distributional analysis of Eu dopant atoms in Ca-alpha-SiAION phosphors. In this context, the effects of convergence semi-angle and Eu z-position on the HAADF image contrast were investigated. Multi-slice image simulation revealed that the contrast of the dopant site was sensitive to change of the defocus level. When the defocus level matched the depth position of a Eu atom, the contrast intensity was significantly increased. The large convergence semi angle greatly increased the depth resolution because the electron beam tends spread instead of channeling along the atomic columns. Through-focus HAADF-STEM imaging was used to analyze the Eu atom distribution surrounding 10nm cubes with defocus steps of 0.68nm each. The contrast depth profile recorded with a narrow step width clearly analyzed the possible depth positions of Eu atoms. The radial distribution function obtained for the Eu dopants was analyzed using an atomic distribution model that was based on the assumption of random distribution. The result suggested that the Ca concentration did not affect the Eu distribution. The decreased fraction of neighboring Eu atoms along z-direction might be caused by the enhanced short-range Coulomb-like repulsive forces along the z-direction. (C) 2017 Elsevier B.V. All rights reserved.
机译:在材料中的单个掺杂剂原子的三维(3D)分布分析对于开发光学,电子和磁性材料是重要的。在这项研究中,我们采用了通过聚焦大角度环形暗场(HAADF)成像,用于CA-α-苏脉磷光体中EU掺杂剂原子的3D分布分析。在这种情况下,研究了收敛半角和欧盟Z位置对HAADF图像对比的影响。多切片图像仿真显示掺杂物位点的对比度对散焦水平的变化敏感。当散焦水平与欧盟原子的深度位置匹配时,对比度强度显着增加。大的收敛半角大大增加了深度分辨率,因为电子束倾向于散布而不是沿原子柱窜。通过聚焦Haadf-Stem成像用于分析围绕10nm立方体的欧盟原子分布,散焦步长为0.68nm。记录具有窄步宽的对比度深度曲线清楚地分析了EU原子的可能深度位置。使用基于随机分布的假设的原子分布模型分析了对EU掺杂剂获得的径向分布函数。结果表明Ca浓度不影响欧盟分布。沿Z方向的相邻欧盟原子的相邻欧盟原子的分数可能是由沿z方向的增强的短距离库仑状排斥力引起的。 (c)2017 Elsevier B.v.保留所有权利。

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