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金属基底上氧化膜生长模式和晶体取向的X射线微衍射研究

X-ray microdiffraction study of growth modes and crystallographic tilts in oxide films on metal substrates.

作者信息

Budai John D, Yang Wenge, Tamura Nobumichi, Chung Jin-Seok, Tischler Jonathan Z, Larson Bennett C, Ice Gene E, Park Chan, Norton David P

机构信息

Condensed Matter Sciences Division, Oak Ridge National Laboratory, PO Box 2008, Oak Ridge, Tennessee 37831, USA.

出版信息

Nat Mater. 2003 Jul;2(7):487-92. doi: 10.1038/nmat916.

Abstract

The crystallographic texture of thin-film coatings plays an essential role in determining such diverse materials properties as wear resistance, recording density in magnetic media and electrical transport in superconductors. Typically, X-ray pole figures provide a macroscopically averaged description of texture, and electron backscattering provides spatially resolved surface measurements. In this study, we have used focused, polychromatic synchrotron X-ray microbeams to penetrate multilayer materials and simultaneously characterize the local structure, orientation and strain tensor of different heteroepitaxial layers with submicrometre resolution. Grain-by-grain microstructural studies of cerium oxide films grown on textured nickel foils reveal two distinct kinetic growth regimes on vicinal surfaces: ledge growth at elevated temperatures and island growth at lower temperatures. In addition, a combinatorial approach reveals that crystallographic tilting associated with these complex interfaces is qualitatively described by a simple geometrical model applicable to brittle films on ductile substrates. The sensitivity of conducting percolation paths to tilt-induced texture improvement is demonstrated.

摘要

薄膜涂层的晶体学织构在决定诸如耐磨性、磁介质中的记录密度以及超导体中的电传输等多种材料性能方面起着至关重要的作用。通常,X射线极图提供了织构的宏观平均描述,而电子背散射提供了空间分辨的表面测量。在本研究中,我们使用聚焦的多色同步加速器X射线微束穿透多层材料,并以亚微米分辨率同时表征不同异质外延层的局部结构、取向和应变张量。对在织构化镍箔上生长的氧化铈薄膜进行逐晶粒微观结构研究,揭示了在近邻表面上两种不同的动力学生长模式:高温下的台阶生长和低温下的岛状生长。此外,一种组合方法表明,与这些复杂界面相关的晶体学倾斜可以用一个适用于韧性衬底上脆性薄膜的简单几何模型进行定性描述。证明了导电渗流路径对倾斜诱导的织构改善的敏感性。

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