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通过高分辨率环形暗场成像研究添加Fe2O3的ZnO中的反演畴界。

Inversion domain boundaries in ZnO with additions of Fe2O3 studied by high-resolution ADF imaging.

作者信息

Wolf Frank, Freitag Bert H, Mader Werner

机构信息

Institut für Anorganische Chemie, Universität Bonn, Römerstr. 164, 53117 Bonn, Germany.

出版信息

Micron. 2007;38(5):549-52. doi: 10.1016/j.micron.2006.07.021. Epub 2006 Sep 7.

Abstract

Columns of metal atoms in the polytypoid compound Fe2O3(ZnO)15 could be resolved by high angle annular dark field imaging in a transmission electron microscopy (TEM)/STEM electron microscope--a result which could not be realized by high-resolution bright field imaging due to inherent strain from inversion domains and inversion domain boundaries (IDBs) in the crystals. The basal plane IDB was imaged in [11 00] yielding the spacing of the two adjacent ZnO domains, while imaging in [21 1 0] yields the position of single metal ions. The images allow the construction of the entire domain structure including the stacking sequence and positions of the oxygen ions. The IDB consists of a single layer of octahedrally co-ordinated Fe3+ ions, and the inverted ZnO domains are related by point symmetry at the iron position. The FeO6 octahedrons are compressed along the ZnO c-axis resulting in a FeO bond length of 0.208 nm which is in the range of FeO distances in iron containing oxides. The model of the basal plane boundary resembles that of the IDB in polytypoid ZnO-In2O3 compounds.

摘要

在透射电子显微镜(TEM)/扫描透射电子显微镜(STEM)中,通过高角度环形暗场成像可以分辨出多型体化合物Fe2O3(ZnO)15中的金属原子列——由于晶体中反演畴和反演畴边界(IDB)产生的固有应变,高分辨率明场成像无法实现这一结果。在[11 00]方向对基面IDB成像可得出两个相邻ZnO畴的间距,而在[21 1 0]方向成像可得出单个金属离子的位置。这些图像有助于构建整个畴结构,包括氧离子的堆叠顺序和位置。IDB由单层八面体配位的Fe3+离子组成,反演的ZnO畴在铁位置处通过点对称相关联。FeO6八面体沿ZnO c轴被压缩,导致FeO键长为0.208 nm,这在含铁氧化物中FeO距离的范围内。基面边界模型类似于多型体ZnO-In2O3化合物中的IDB模型。

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