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中国物理学会期刊

双原子填充式skutterudite化合物的结构及X射线光电子能谱分析

CSTR: 32037.14.aps.55.6506

The structure and X-ray photoelectron spectroscopy analysis of double-atom filled skutterudite compounds

CSTR: 32037.14.aps.55.6506
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  • 用高温熔融、淬火、扩散退火结合放电等离子烧结(SPS)法合成了Ca和Ce复合填充的单相CamCenFexCo4-xSb12(m=0.17—0.27,n=0.05—0.25,x=1.5)化合物,并结合Rietveld结构解析以及X射线光电子能谱(XPS)分析研究了两种原子复合填充skutterudite化合物的结构与填充状态.Rietveld结构解析表明,CamCenFe1.5Co2.5Sb12化合物具有skutterudite结构,Ca和Ce原子填充到了Sb的二十面体空洞中,填充原子热振动参数BCa/Ce远大于框架原子的热振动参数BFe/Co和BSb.XPS元素窄区谱分析结果表明,Sb原子在结构中有五种化学状态,每种化学状态的相对含量主要由总填充分数决定,填充原子Ca在Sb的二十面体空洞出现概率有三种可能,但在中心位置出现的概率最大.

     

    Double-atom filled single-phase CamCenFexCo4-xSb12 compounds were synthesized through a melting—quenching—diffusion—annealing procedure. Ca and Ce were used as filling atoms. The structure of double-atom filled skutterudite compounds was investigated via Rietveld refinement and X-ray photoelectron spectroscopy analysis. The results of Rietveld refinement indicate that CamCenFexCo4-xSb12 compounds have skutterudite structure, and the Sb-icosahedron voids were filled with Ca or Ce. The thermal parameter (B) of Ca/Ce is much larger than those of Sb and Fe/Co in the compounds. The specific chemical states of atoms were obtained from X-ray photoelectron spectroscopy quantitative analysis, the results show that the Sb atoms have five chemical states, and the relative percentages of Sb atoms in different chemical states are correlative with the total filling fraction. The filling atoms tend to be located at the center of the voids of the Sb-icosahedrons preferentially.

     

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