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AC calorimetry of H_2O at pressures up to 9 GPa in diamond anvil cells

机译:金刚石砧室中H_2O的交流量热法,压力高达9 GPa

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摘要

If successfully developed, calorimetry at tens of GPa of pressure could help characterize phase transitions in materials such as high-pressure minerals, metals, and molecular solids. Here, we extend alternating-current calorimetry to 9 GPa and 300 K in a diamond anvil cell and use it to study phase transitions in H_2O. In particular, water is loaded into the sample chambers of diamond-cells, along with thin metal heaters (1 µm-thick platinum or 20nm-thick gold on a glass substrate) that drive high-frequency temperature oscillations (20 Hz to 600 kHz; 1 to 10K). The heaters also act as thermometers via the third-harmonic technique, yielding calorimetric data on (1) heat conduction to the diamonds and (2) heat transport into substrate and sample. Using this method during temperature cycles from 300 to 200 K, we document melting, freezing, and proton ordering and disordering transitions of H_2O at 0 to 9 GPa, and characterize changes in thermal conductivity and heat capacity across these transitions. The technique and analysis pave the way for calorimetry experiments on any non-metal at pressures up to ~ 100 GPa, provided a thin layer (several ,um-thick) of thermal insulation supports a metallic thin-film (tens of nm thick) Joule-heater attached to low contact resistance leads inside the sample chamber of a diamond-cell.
机译:如果成功开发,在数十GPa压力下的量热法可以帮助表征材料的相变,例如高压矿物,金属和分子固体。在这里,我们将交流量热法扩展到钻石砧室中的9 GPa和300 K,并用它来研究H_2O中的相变。尤其是,水与驱动高频温度振荡(20 Hz至600 kHz的薄金属加热器)(在玻璃基板上的1 µm厚的铂或20nm厚的金)一起被加载到金刚石电池的样品室中。 1至10K)。加热器还通过三次谐波技术充当温度计,产生有关(1)到钻石的热传导和(2)热量传递到基材和样品中的量热数据。在300至200 K的温度循环中使用此方法,我们记录了H_2O在0至9 GPa时的熔化,冻结,质子有序化和无序化转变,并表征了这些转变过程中热导率和热容量的变化。该技术和分析为在高达约100 GPa的压力下对任何非金属进行量热实验铺平了道路,前提是薄(几微米,厚)的绝热层支持金属薄膜(几十纳米厚)焦耳附着在低接触电阻上的加热器引线进入菱形电池的样品室内部。

著录项

  • 来源
    《Journal of Applied Physics 》 |2017年第24期| 245901.1-245901.10| 共10页
  • 作者单位

    Geophysical Laboratory, Carnegie Institution for Science, Washington, District of Columbia 20015, USA;

    Geophysical Laboratory, Carnegie Institution for Science, Washington, District of Columbia 20015, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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