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Phase diagram, stability and electronic properties of an Fe–P system under high pressure: a first principles study

机译:Fe-P体系在高压下的相图,稳定性和电子性质:第一个原理研究

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Fe–P binary compounds have attracted much attention, particularly under high pressure, since they are the constituents of the Earth's core. However, most studies focus on the single stoichiometry of Fe–P binary compounds at high pressure, and their whole phase diagram and relative stabilities have been unexplored thus far. Herein, first principles swarm structure predictions are performed to find stable structures of Fe–P compounds with various FexPy (x = 1–4 and y = 1, or x = 1 and y = 2) compositions. Then, their phase diagram and relative stabilities are reliably determined based on predicted structures. Specifically, the FeP, Fe2P and Fe4P compounds are found to be stable in the pressure range of 0–400 GPa. The Fe3P compound decomposes into Fe2P and Fe4P above 214 GPa. FeP2 becomes unstable above 82 GPa. Notably, two new phases (i.e. C2/c-structured Fe4P and Cmcm-structured Fe3P) are found to be more stable than the previously reported phases. In addition, the XRD pattern of the predicted Cmcm-structured Fe3P matches the experimental patterns, and we are awaiting future experimental confirmation. Electronic band calculations show that the Fe–P binary compounds are metallic, with a pronounced Fe 3d component crossing the Fermi level. Cmcm-structured Fe3P is ferromagnetic. Our study not only provides useful information for the further study of Fe–P binary compounds but also for the determination of the Earth's core components.
机译:Fe-P二元化合物是地球核心的组成部分,因此受到了广泛的关注,特别是在高压下。但是,大多数研究集中在高压下Fe-P二元化合物的单一化学计量,到目前为止,尚未探索其整个相图和相对稳定性。在此,进行第一性原理群预测以找到具有各种Fe x P 的Fe–P化合物的稳定结构。 y x = 1-4和 y = 1或 x = 1, y = 2)组成。然后,根据预测的结构可靠地确定其相图和相对稳定性。具体而言,发现FeP,Fe 2 P和Fe 4 P化合物在压力范围内稳定为0–400 GPa。 Fe 3 P化合物分解为Fe 2 P和Fe 4 P高于214 GPa。 FeP 2 在82 GPa以上变得不稳定。值得注意的是,出现了两个新的相(即C 2 / c 结构的Fe 4 P和 Cmcm < / em>结构的Fe 3 P)比以前报道的相更稳定。此外,预测的 Cmcm 结构的Fe 3 P的XRD图谱与实验图谱匹配,我们正在等待未来的实验确认。电子能带计算表明,Fe-P二元化合物是金属,具有明显的Fe 3d成分穿过费米能级。 Cmcm 结构的Fe 3 P具有铁磁性。我们的研究不仅为进一步研究Fe-P二元化合物提供了有用的信息,而且为确定地球的核心成分提供了有用的信息。

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