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EXAFS investigation of the local atomic structure of Fe-Ge nanocrystalline disordered alloys

机译:EXAFS研究Fe-Ge纳米晶无序合金的局部原子结构

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This paper reports on the results of EXAFS investigations (Fe K and Ge K absorption edges) of binary supersaturated nanocrystalline solid solutions Fe100-xGex(x = 15-40 at % Ge) prepared by mechanical alloying. The nanocrystalline disordered structure of the single-phase alloys is characterized using X-ray diffraction, Mossbauer spectroscopy, and magnetic measurements. The EXAFS spectra are analyzed by solving the inverse binary problem with the use of combined data on the Fe K and Ge K absorption edges. The parameters of the partial pair correlation functions obtained indicate that the crystal lattice is characterized by strong local static distortions and short-range chemical order increasing with an increase in the germanium content. Moreover, the formation of a hexagonal-type macrostructure in the body-centered cubic (bcc) lattice occurs through a "local" stage.
机译:本文报道了通过机械合金化制备的二元超饱和纳米晶固溶体Fe100-xGex(x = 15-40 at%Ge)的EXAFS研究结果(Fe K和Ge K吸收边)。单相合金的纳米晶无序结构使用X射线衍射,Mossbauer光谱和磁测量进行表征。通过使用Fe K和Ge K吸收边上的组合数据解决反二进制问题,分析了EXAFS光谱。所获得的部分对相关函数的参数表明,晶格的特征在于强局部静电畸变和短程化学级随锗含量的增加而增加。而且,通过“局部”阶段在体心立方(bcc)晶格中形成六边形宏观结构。

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