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美国卫生研究院文献>ACS Omega
>Superstructure of Fe5–xGeTe2 Determined by Te K-Edge Extended X-ray Absorption Fine Structure and Te Kα X-ray Fluorescence Holography
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Superstructure of Fe5–xGeTe2 Determined by Te K-Edge Extended X-ray Absorption Fine Structure and Te Kα X-ray Fluorescence Holography
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机译:Te K-Edge 扩展 X 射线吸收精细结构和 Te Kα X 射线荧光全息法测定的 Fe5–xGeTe2 超结构
The local structure of the two-dimensional van der Waals material, Fe5–xGeTe2, which exhibits unique structural/magnetic phase transitions, was investigated by Te K-edge extended X-ray absorption fine structure (EXAFS) and Te Kα X-ray fluorescence holography (XFH) over a wide temperature range. The formation of a trimer of Te atoms at low temperatures has been fully explored using these methods. An increase in the Te–Fe distance at approximately 150 K was suggested by EXAFS and presumably indicates the formation of a Te trimer. Moreover, XFH displayed clear atomic images of Te atoms. Additionally, the distance between the Te atoms shortened, as confirmed from the atomic images reconstructed from XFH, indicating the formation of a trimer of Te atoms, i.e., a charge-ordered superstructure. Furthermore, Te Kα XFH provided unambiguous atomic images of Fe atoms occupying the Fe1 site; the images were not clearly observed in the Ge Kα XFH that was previously reported because of the low occupancy of Fe and Ge atoms. In this study, EXAFS and XFH clearly showed the local structure around the Te atom; in particular, the formation of Te trimers caused by charge-ordered phase transitions was clearly confirmed. The charge-ordered phase transition is fully discussed based on the structural variation at low temperatures, as established from EXAFS and XFH.
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机译:在较宽的温度范围内,通过 Te K-edge 扩展 X 射线吸收精细结构 (EXAFS) 和 Te Kα X 射线荧光全息术 (XFH) 研究了二维范德华材料的局部结构,Fe5–xGeTe2 表现出独特的结构/磁性相变。使用这些方法已经充分探索了在低温下形成 Te 原子的三聚体。EXAFS 建议 Te-Fe 距离增加至约 150 K,可能表明 Te 三聚体的形成。此外,XFH 显示了 Te 原子的清晰原子图像。此外,Te 原子之间的距离缩短了,从 XFH 重建的原子图像证实了这一点,这表明形成了 Te 原子的三聚体,即电荷有序的上层结构。此外,Te Kα XFH 提供了占据 Fe1 位点的 Fe 原子的明确原子图像;由于Fe和Ge原子的占有率低,在先前报道的Ge Kα XFH中没有清楚地观察到图像。在这项研究中,EXAFS 和 XFH 清楚地显示了 Te 原子周围的局部结构;特别是,由电荷有序相变引起的 Te 三聚体的形成得到了明确的证实。根据 EXAFS 和 XFH 确定的低温结构变化,对电荷有序相变进行了充分讨论。
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