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Thermal equation of state of ruthenium characterized by resistively heated diamond anvil cell

机译:以电阻加热的金刚石砧盒为特征的钌状态热方程

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摘要

The high-pressure and high-temperature structural and chemical stability of ruthenium has been investigated via synchrotron X-ray diffraction using a resistively heated diamond anvil cell. In the present experiment, ruthenium remains stable in the hcp phase up to 150 GPa and 960 K. The thermal equation of state has been determined based upon the data collected following four different isotherms. A quasi-hydrostatic equation of state at ambient temperature has also been characterized up to 150 GPa. The measured equation of state and structural parameters have been compared to the results of ab initio simulations performed with several exchange-correlation functionals. The agreement between theory and experiments is generally quite good. Phonon calculations were also carried out to show that hcp ruthenium is not only structurally but also dynamically stable up to extreme pressures. These calculations also allow the pressure dependence of the Raman-active E2g mode and the silent B1g mode of Ru to be determined.
机译:钌的高温高压结构和化学稳定性已通过使用电阻加热金刚石砧盒的同步加速器X射线衍射进行了研究。在本实验中,钌在高达150 GPa和960 K的hcp相中保持稳定。根据四个不同的等温线收集的数据确定了状态热方程。高达150 GPa的环境温度下的准静液压状态方程也已被表征。已将测得的状态方程和结构参数与使用几种交换相关函数进行的从头算起的仿真结果进行了比较。理论和实验之间的一致性通常很好。声子的计算还表明,六氯环己烷钌不仅在结构上而且在极端压力下都动态稳定。这些计算还允许确定Ru的拉曼活性E2g模式和无声B1g模式的压力依赖性。

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