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Atomic-scale Chemical Imaging and Quantification of Metallic Alloy Structures by Energy-Dispersive X-ray Spectroscopy

机译:通过能量分散X射线光谱法的原子尺度化学成像和金属合金结构的定量

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Determination of atomic-scale crystal structure for nanostructured intermetallic alloys, such as magnetic alloys containing Al, Ni, Co (alnico) and Fe, is crucial for understanding physical properties such as magnetism, but technically challenging due to the small interatomic distances and the similar atomic numbers. By applying energy-dispersive X-ray spectroscopy (EDS) mapping to the study of two intermetallic phases of an alnico alloy resulting from spinodal decomposition, we have determined atomic-scale chemical composition at individual lattice sites for the two phases: one is the B2 phase with Fe0.76Co0.24 -Fe0.40Co0.60 ordering and the other is the L21 phase with Ni0.48Co0.52 at A-sites, Al at BΙ-sites and Fe0.20Ti0.80 at BΙΙ-sites, respectively. The technique developed through this study represents a powerful real-space approach to investigate structure chemically at the atomic scale for a wide range of materials systems.
机译:用于纳米结构金属间合金的原子尺度晶体结构,例如含有Al,Ni,Co(Alnico)和Fe的磁性合金,对理解磁性等物理性质至关重要,但由于小的内部距离和类似的技术挑战原子序数。通过将能量分散X射线光谱(EDS)映射施加到纺丝镜分解引起的Alnico合金的两种金属间相的研究中,我们在两个阶段的单个晶格位点具有确定的原子尺度化学成分:一个是B2使用Fe 0.76 co <​​sub> 0.24 -fe 0.40 co <​​sub> 0.60 排序,另一个是l2 1 相对于Ni 0.48 Co 0.52 0.52 在a-sita,Al在B 1 -sites和Fe 0.20 ι -sites处分别沉秒 0.80 。通过该研究开发的技术代表了一种强大的实用空间方法,可以在各种材料系统上进行化学调查结构。

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