Pépin Charles M, André Ramesh, Occelli Florent, Dembele Florian, Mozzanica Aldo, Hinger Viktoria, Levantino Matteo, Loubeyre Paul
CEA, DAM, DIF, F-91297, Arpajon, France.
Université Paris-Saclay, CEA, Laboratoire Matière en Conditions Extrêmes, 91680, Bruyères-le-Châtel, France.
Nat Commun. 2024 Sep 19;15(1):8239. doi: 10.1038/s41467-024-52576-z.
Water can be dynamically over-compressed well into the stability field of ice VII. Whether water then transforms into ice VII, vitreous ice or a metastable novel crystalline phase remained uncertain. We report here the freezing of over-compressed water to ice VII by time-resolved X-ray diffraction. Quasi-isothermal dynamic compression paths are achieved using a dynamic-piezo-Diamond-Anvil-Cell, with programmable pressure rise time from 0.1 ms to 100 ms. By combining the present data set with those obtained on various ns-dynamical platforms, a complete evolution of the solidification pressure of metastable water versus the compression rate is rationalized within the classical nucleation theory framework. Also, when crystallization into ice VII occurs in between 1.6 GPa and 2.0 GPa, that is in the stability field of ice VI, a structural evolution over few ms is then observed into a mixture of ice VI and ice VII that seems to resolve apparent contradictions between previous results.
水能够被动态地过度压缩至冰VII的稳定区域。此后水是否会转变为冰VII、玻璃态冰或亚稳的新型晶相仍不确定。我们在此报告通过时间分辨X射线衍射将过度压缩的水冷冻成冰VII。使用动态压电金刚石对顶砧实现准等温动态压缩路径,压力上升时间可在0.1毫秒至100毫秒之间编程。通过将当前数据集与在各种纳秒动力学平台上获得的数据集相结合,在经典成核理论框架内,亚稳水的凝固压力相对于压缩速率的完整演变得以合理化。此外,当在1.6吉帕至2.0吉帕之间结晶成冰VII时,即在冰VI的稳定区域内,随后在几毫秒内观察到向冰VI和冰VII混合物的结构演变,这似乎解决了先前结果之间明显的矛盾。