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In-situ X-ray diffraction study on beta-CrOOH at high pressure and high-temperature

机译:高压和高温β-CROOH的原位X射线衍射研究

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High pressure hydrous phases with distorted rutile-type structure have attracted much interest as potential water reservoirs in the Earth's mantle. An in-situ X-ray diffraction study of beta-CrOOH was performed at high pressures of up to 6.2 GPa and high-temperatures of up to 700 K in order to clarify the temperature effect on compression behaviors of beta-CrOOH. The P-V-T data fitted to a Birch-Murnaghan equation of state yielded the following results: isothermal bulk modulus K-T0 = 191(4) GPa, temperature derivative ( partial differential K-T/ partial differential T)(P) = -0.04(2) GPa K-1, and volumetric thermal expansion coefficient alpha = 3.3(2) x 10(-5) K-1. In this study, at 300 K, the a-axis became less compressible at pressures above 1-2 GPa. We found that the pressure where the slopes of a/b and a/c ratios turned positive increased with temperature. This is the first experimental study indicating the temperature dependence of the change in the axial compressibility in distorted rutile-type M3+OOH.
机译:具有扭曲的金红石型结构的高压含水阶段吸引了大量兴趣,作为地球地幔中的潜在水库。 β-CROOH的原位X射线衍射研究在高达6.2GPa的高压下进行,高达700 k的高温,以澄清对β-CROOH的压缩行为的温度影响。适用于桦木 - Murnaghan方程的PVT数据产生以下结果:等温堆积模量K-T0 = 191(4)GPA,温度衍生物(部分差分Kt /偏差分T)(P)= -0.04(2) GPA K-1,和体积热膨胀系数α= 3.3(2)×10(-5)K-1。在本研究中,在300 k下,A轴在1-2GPa以上的压力下变得更少可压缩。我们发现A / B斜率和A / C比率的压力随温度而转化阳性。这是第一个实验研究,表明在扭曲的金红石型M3 + OOH中轴向压缩性变化的温度依赖性。

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