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FeOOH晶体键合结构与性质的高压演化

High-Pressure Evolution of Crystal Bonding Structures and Properties of FeOOH.

作者信息

Lu Cheng, Chen Changfeng

机构信息

Department of Physics and Astronomy, High Pressure Science and Engineering Center , University of Nevada , Las Vegas , Nevada 89154 , United States.

出版信息

J Phys Chem Lett. 2018 May 3;9(9):2181-2185. doi: 10.1021/acs.jpclett.8b00947. Epub 2018 Apr 13.

Abstract

Recent conflicting reports on the high-pressure structural evolution of iron oxide-hydroxide (FeOOH) offer starkly contrasting scenarios for the hydrogen and oxygen cycles in Earth's interior. Here we explore the crystal structures of FeOOH using an advanced search algorithm combined with first-principles calculations. Our results indicate a phase transition around 70 GPa from the known ε-FeOOH to a new pyrite-type FeOOH (P-FeOOH) phase, and the two phases remain nearly degenerate in an unusually large pressure range. These findings clarify and explain the experimentally observed structural evolution and extensive phase coexistence. Moreover, our structure search identifies a previously unknown monoclinic (M-FeOOH) phase that is energetically close to P-FeOOH at pressures near the core-mantle boundary. We further reveal that the high-pressure FeOOH phases exhibit remarkably distinct sound-velocity profiles, providing key material properties essential to interpreting seismic data and elucidating FeOOH's influence on geophysical and geochemical processes in deep Earth.

摘要

最近关于氢氧化铁(FeOOH)高压结构演化的相互矛盾的报告,为地球内部的氢和氧循环提供了截然不同的情景。在这里,我们使用先进的搜索算法结合第一性原理计算来探索FeOOH的晶体结构。我们的结果表明,在70 GPa左右发生了从已知的ε-FeOOH到一种新的黄铁矿型FeOOH(P-FeOOH)相的相变,并且这两个相在异常大的压力范围内几乎简并。这些发现澄清并解释了实验观察到的结构演化和广泛的相共存。此外,我们的结构搜索识别出一种先前未知的单斜相(M-FeOOH),在接近核幔边界的压力下,其能量与P-FeOOH相近。我们进一步揭示,高压FeOOH相表现出明显不同的声速剖面,提供了解释地震数据和阐明FeOOH对地球深部地球物理和地球化学过程影响所必需的关键材料特性。

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