We model, via classical molecular dynamics simulations, the plastic phase of ice VII across a wide range of the phase diagram of interest for planetary investigations. Although structural and dynamical properties of plastic ice VII are mostly independent on the thermodynamic conditions, the hydrogen bond network (HBN) acquires a diverse spectrum of topologies distinctly different from that of liquid water and of ice VII simulated at the same pressure. We observe that the HBN topology of plastic ice carries some degree of similarity with the crystal phase, stronger at thermodynamic conditions proximal to ice VII, and gradually lessening when approaching the liquid state. Our results enrich our understanding of the properties of water at high pressure and high temperature and may help in rationalizing the geology of water-rich planets. Published under an exclusive license by AIP Publishing.

Temperature- and pressure-dependence of the hydrogen bond network in plastic ice VII / Toffano, A; Russo, J; Rescigno, M; Ranieri, U; Bove, Le; Martelli, F. - In: THE JOURNAL OF CHEMICAL PHYSICS. - ISSN 0021-9606. - 157:9(2022), p. 094502. [10.1063/5.0111189]

Temperature- and pressure-dependence of the hydrogen bond network in plastic ice VII

Russo, J;Rescigno, M;Bove, LE;
2022

Abstract

We model, via classical molecular dynamics simulations, the plastic phase of ice VII across a wide range of the phase diagram of interest for planetary investigations. Although structural and dynamical properties of plastic ice VII are mostly independent on the thermodynamic conditions, the hydrogen bond network (HBN) acquires a diverse spectrum of topologies distinctly different from that of liquid water and of ice VII simulated at the same pressure. We observe that the HBN topology of plastic ice carries some degree of similarity with the crystal phase, stronger at thermodynamic conditions proximal to ice VII, and gradually lessening when approaching the liquid state. Our results enrich our understanding of the properties of water at high pressure and high temperature and may help in rationalizing the geology of water-rich planets. Published under an exclusive license by AIP Publishing.
2022
Water; Pressure; Hydrogen bonds
01 Pubblicazione su rivista::01a Articolo in rivista
Temperature- and pressure-dependence of the hydrogen bond network in plastic ice VII / Toffano, A; Russo, J; Rescigno, M; Ranieri, U; Bove, Le; Martelli, F. - In: THE JOURNAL OF CHEMICAL PHYSICS. - ISSN 0021-9606. - 157:9(2022), p. 094502. [10.1063/5.0111189]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1669434
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