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The Local Bonding Environment of Amorphous In-Zn-O Films Studied by X-ray Absorption Fine Structure and Total X-ray Scattering Using Synchrotron Radiation

机译:X射线吸收精细结构和同步辐射全X射线散射研究非晶In-Zn-O薄膜的局部键合环境

摘要

The structure of amorphous In-Zn-O (a-IZO) thin films was investigated using X-ray absorption fine structure (XAFS) and total X-ray scattering techniques. In spite of the lack of long-range periodicity, a-IZO thin films were found to exhibit significant ordering on short length scales. It was found that indium and zinc are 6- and 4- fold coordinated with oxygen, respectively, as they are in their native crystalline structures. The InO6 and ZnO4 polyhedra were also found to exhibit edge-sharing connectivity. Although the edge-shared polyhedra had a significant distribution of bond lengths, the next-nearest neighbor metal atoms occurred at approximately the same composition found using bulk composition measurements. The wide temperature and composition range where IZO films remain amorphous is likely due to the structural frustration induced by Zn-centered tetrahedrons and In-centered octahedrons.
机译:使用X射线吸收精细结构(XAFS)和全X射线散射技术研究了非晶In-Zn-O(a-IZO)薄膜的结构。尽管缺乏长周期周期性,但发现a-IZO薄膜在短长度尺度上显示出显着的有序性。发现铟和锌分别以其天然晶体结构与氧配位为6倍和4倍。还发现InO6和ZnO4多面体显示出边缘共享的连通性。尽管边缘共享的多面体具有明显的键长分布,但下一个最近的相邻金属原子出现在使用本体组成测量发现的大致相同的组成处。 IZO薄膜保持非晶态的宽温度范围和成分范围很可能是由于以Zn为中心的四面体和以In为中心的八面体引起的结构失调。

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    Reese Brandon Jay;

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  • 年度 2011
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