首页> 外文OA文献 >Crossing the boundary between face-centred cubic and hexagonal close packed: the structure of nanosized cobalt is unraveled by a model accounting for shape, size distribution and stacking faults, allowing simulation of XRD, XANES and EXAFS
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Crossing the boundary between face-centred cubic and hexagonal close packed: the structure of nanosized cobalt is unraveled by a model accounting for shape, size distribution and stacking faults, allowing simulation of XRD, XANES and EXAFS

机译:穿过面朝式立方体和六角形关闭之间的边界:纳米钴结构通过模型核算的形状,尺寸分布和堆叠故障,允许模拟XRD,Xanes和EXAFS

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摘要

The properties of nanostructured cobalt in the fields of magnetic, catalytic and biomaterials depend critically on Co close-packing. In this paper we report a structural analysis of nanosized cobalt based on the whole XRD pattern simulation allowed by the Debye equation. The underlying structural model involves statistical sequences of cobalt layers and produces simulated XRD powder patterns bearing the concurrent signatures of hexagonal and cubic close packing. Size distribution, shape and distance distribution between pairs of atoms are also modelled. The simulation algorithm allows straightforward fitting to experimental data and hence the assessment of the model parameters. Analysis of two samples having, respectively, hcp and fcc appearance is reported. EXAFS and XANES spectra are simulated on the basis of the model, giving a tool for the interpretation of structural data complementary to XRD. The outlined structural analysis provides a rigorous structural basis for correlations with magnetic and catalytic properties and an experimental reference for ab initio modellization of these properties.
机译:磁性,催化和生物材料田间纳米结构钴的性质依赖于CO紧密包装。本文基于去德夫方程允许的全XRD图案模拟报告了纳米钴的结构分析。底层结构模型涉及钴层的统计序列,并产生具有六边形和立方密封包装的并发特征的模拟XRD粉末图案。还建模了成对原子之间的尺寸分布,形状和距离分布。仿真算法允许直接拟合到实验数据,从而评估模型参数。报道了分别对两个样品的分析,分别为HCP和FCC外观。在模型的基础上模拟EXAFS和XANES Spectra,为互补XRD互补的结构数据的工具提供了一种工具。概述的结构分析为与磁性和催化性质的相关性和这些性质的AB Initio改变的实验参考提供了严格的结构基础。

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