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Capability of X-ray diffraction for the study of microstructure of metastable thin films

机译:X射线衍射研究亚稳薄膜微观结构的能力

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Metastable phases are often used to design materials with outstanding properties, which cannot be achieved with thermodynamically stable compounds. In many cases, the metastable phases are employed as precursors for controlled formation of nanocomposites. This contribution shows how the microstructure of crystalline metastable phases and the formation of nanocomposites can be concluded from X-ray diffraction experiments by taking advantage of the high sensitivity of X-ray diffraction to macroscopic and microscopic lattice deformations and to the dependence of the lattice deformations on the crystallographic direction. The lattice deformations were determined from the positions and from the widths of the diffraction lines, the dependence of the lattice deformations on the crystallographic direction from the anisotropy of the line shift and the line broadening. As an example of the metastable system, the supersaturated solid solution of titanium nitride and aluminium nitride was investigated, which was prepared in the form of thin films by using cathodic arc evaporation of titanium and aluminium in a nitrogen atmosphere. The microstructure of the (Ti,Al)N samples under study was tailored by modifying the [Al]/[Ti] ratio in the thin films and the surface mobility of the deposited species.
机译:亚稳态相通常用于设计具有出色性能的材料,而热力学稳定的化合物是无法实现的。在许多情况下,亚稳相被用作控制纳米复合材料形成的前体。这一贡献表明,如何利用X射线衍射对宏观和微观晶格变形的高敏感性以及对晶格变形的依赖性,可以从X射线衍射实验得出晶体亚稳态相的微观结构和纳米复合物的形成的结论。在结晶方向上。晶格变形是根据衍射线的位置和宽度,晶格变形对晶体学方向的依赖关系来确定的,这取决于线位移的各向异性和线的展宽。作为亚稳体系的一个例子,研究了氮化钛和氮化铝的过饱和固溶体,该固溶体是通过在氮气氛下利用钛和铝的阴极电弧蒸发而制成薄膜形式的。通过修改薄膜中的[Al] / [Ti]比和沉积物质的表面迁移率,可以调整正在研究的(Ti,Al)N样品的微观结构。

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