Intermolecular forces at ice and water interfaces: premelting, surface freezing and regelation
arXiv:2205.04078 · doi:10.1063/5.0097378
Abstract
Using Lifshitz theory we assess the role of van der Waals forces at interfaces of ice and water. The results are combined with measured structural forces from computer simulations to develop a quantitative model of the surface free energy of premelting films. This input is employed within the framework of wetting theory and allows us to predict qualitatively the behavior of quasi-liquid layer thickness as a function of ambient conditions. Our results emphasizes the significance of vapor pressure. The ice vapor interface is shown to exhibit only incomplete premelting, but the situation can shift to a state of complete surface melting above water saturation. The results obtained serve also to assess the role of subsurface freezing at the water-vapor interface, and we show that intermolecular forces favor subsurface ice nucleation only in conditions of water undersaturation. We show ice regelation at ambient pressure may be explained as a process of capillary freezing, without the need to invoke the action of bulk pressure melting. Our results for van der Waals forces are exploited in order to gauge dispersion interactions in empirical point charge models of water.
27 pages, 15 figures, 7 tables (including supplementary material)
References in corpus (11)
- Quasiparticle band structure based on a generalized Kohn-Sham scheme
- Ice structures, patterns, and processes: A view across the ice-fields
- Absence of superheating for ice Ih with a free surface : a new method of determining the melting point of different water models
- Premelting, fluctuations and coarse-graining of water-ice interfaces
- Premelting-Induced Smoothening of the Ice-Vapor Interface
- Surface van der Waals Forces in a Nutshell
- Lifshitz theory of wetting films at three phase coexistence: The case of ice nucleation on Silver Iodide (AgI)
- Structure and fluctuations of the premelted liquid film of ice at the triple point
- Structure and water attachment rates of ice in the atmosphere: role of nitrogen
- Premelting and formation of ice due to Casimir-Lifshitz interactions: Impact of improved parameterization for materials
- Analytical theory for the crossover from retarded to non-retarded interactions between metal plates
Cited by in corpus (6)
- Understanding Interfacial Ice Premelting: Structure, Adhesion and Nucleation
- Is it possible to overheat ice? The activated melting of TIP4P/Ice at solid-vapor coexistence
- The macroscopic contact angle of water on ice
- The Key Physics of Ice Premelting
- Impact of the sodium and calcium chlorides uptake on the interfacial behavior of ice: premelting, structure, and dynamics
- Beyond Attraction: A Novel Approach to Repulsive Casimir-Lifshitz Forces using heterogeneous off-stoichiometry in gapped metals