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New porous water ice metastable at atmospheric pressure obtained by emptying a hydrogen-filled ice

机译:通过排空充满氢气的冰获得在大气压下亚稳态的新型多孔水冰

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摘要

The properties of some forms of water ice reserve still intriguing surprises. Besides the several stable or metastable phases of pure ice, solid mixtures of water with gases are precursors of other ices, as in some cases they may be emptied, leaving a metastable hydrogen-bound water structure. We present here the first characterization of a new form of ice, obtained from the crystalline solid compound of water and molecular hydrogen called C0-structure filled ice. By means of Raman spectroscopy, we measure the hydrogen release at different temperatures and succeed in rapidly removing all the hydrogen molecules, obtaining a new form of ice (ice XVII). Its structure is determined by means of neutron diffraction measurements. Of paramount interest is that the emptied crystal can adsorb again hydrogen and release it repeatedly, showing a temperature-dependent hysteresis.
机译:某些形式的水冰储备的性质仍然令人着迷。除了纯冰的几个稳定或亚稳态相之外,水与气体的固体混合物是其他冰的前兆,因为在某些情况下,它们可能会被排空,从而留下一个与氢结合的亚稳态水结构。我们在此介绍一种新形式的冰的首次表征,该冰是从水和分子氢的结晶固体化合物(称为C0结构填充冰)中获得的。通过拉曼光谱法,我们测量了不同温度下的氢释放,并成功地快速去除了所有氢分子,从而获得了新形式的冰(XVII冰)。其结构通过中子衍射测量确定。最重要的是,倒空的晶体可以再次吸收氢并反复释放,表现出随温度变化的磁滞现象。

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