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Superconductivity in metastable phases of phosphorus-hydride compounds under high pressure

机译:高压下磷氢化合物亚稳相的超导电性

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摘要

Hydrogen-rich compounds have been extensively studied both theoretically and experimentally in the quest for novel high-temperature superconductors. Reports on sulfur hydride attaining metallicity under pressure and exhibiting superconductivity at temperatures as high as 200 K have spurred an intense search for room-temperature superconductors in hydride materials. Recently, compressed phosphine was reported to metallize at pressures above 45 GPa, reaching a superconducting transition temperature (T-C) of 100 K at 200 GPa. However, neither the exact composition nor the crystal structure of the superconducting phase have been conclusively determined. In this work, the phase diagram of PHn (n = 1,2,3,4,5,6) was extensively explored by means of ab initio crystal structure predictions using the minima hopping method (MHM). The results do not support the existence of thermodynamically stable PHn compounds, which exhibit a tendency for elemental decomposition at high pressure even when vibrational contributions to the free energies are taken into account. Although the lowest energy phases of PH1,2,3 display T-C`s comparable to experiments, it remains uncertain if the measured values of T-C can be fully attributed to a phase-pure compound of PHn.
机译:为了寻求新型的高温超导体,已经在理论和实验上对富氢化合物进行了广泛的研究。关于氢化硫在压力下达到金属性并在高达200 K的温度下表现出超导性的报道,促使人们对氢化物材料中的室温超导体进行了广泛的研究。最近,据报道压缩的膦在高于45 GPa的压力下会金属化,在200 GPa时达到100 K的超导转变温度(T-C)。但是,尚未确定超导相的确切组成或晶体结构。在这项工作中,PHn(n = 1,2,3,4,5,6)的相图通过使用最小跳变方法(MHM)进行的从头算晶体结构预测得到了广泛探索。结果不支持存在热力学稳定的PHn化合物,即使考虑到对自由能的振动贡献,该化合物也表现出在高压下元素分解的趋势。尽管PH1,2,3的最低能相显示出与实验相当的T-C,但仍不确定T-C的测量值是否可以完全归因于PHn的纯相化合物。

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