Rate of Homogeneous Crystal Nucleation in molten NaCl
arXiv:0906.5274 · doi:10.1063/1.1896348
Abstract
We report a numerical simulation of the rate of crystal nucleation of sodium chloride from its melt at moderate supercooling. In this regime nucleation is too slow to be studied with "brute-force" Molecular Dynamics simulations. The melting temperature of ("Tosi-Fumi") NaCl is K. We studied crystal nucleation at =800K and 825K. We observe that the critical nucleus formed during the nucleation process has the crystal structure of bulk NaCl. Interestingly, the critical nucleus is clearly faceted: the nuclei have a cubical shape. We have computed the crystal-nucleation rate using two completely different approaches, one based on an estimate of the rate of diffusive crossing of the nucleation barrier, the other based on the Forward Flux Sampling and Transition Interface Sampling (FFS-TIS) methods. We find that the two methods yield the same result to within an order of magnitude. However, when we compare the extrapolated simulation data with the only available experimental results for NaCl nucleation, we observe a discrepancy of nearly 5 orders of magnitude. We discuss the possible causes for this discrepancy.
References in corpus (1)
Cited by in corpus (24)
- Crystal Nucleation in Liquids: Open Questions and Future Challenges in Molecular Dynamics Simulations
- Homogeneous ice nucleation evaluated for several water models
- Systematic Improvement of Classical Nucleation Theory
- Microscopic Mechanism and Kinetics of Ice Formation at Complex Interfaces: Zooming in on Kaolinite
- Studying Rare Events using Forward-Flux Sampling: Recent Breakthroughs and Future Outlook
- Suppression of Sub-surface Freezing in Free-Standing Thin Films of a Coarse-grained Model of Water
- State-of-the-art models for the phase diagram of carbon and diamond nucleation
- The Seven Deadly Sins: when computing crystal nucleation rates, the devil is in the details
- Effects of surface interactions on heterogeneous ice nucleation for a monatomic water model
- On the Gibbs-Thomson equation for the crystallization of confined fluids
- Calculation of the melting point of alkali halides by means of computer simulations
- Collective Variables for the Study of Crystallization
- Unusual crystallization behavior close to the glass transition
- Out-of-equilibrium processes in suspensions of oppositely charged colloids: liquid-to-crystal nucleation and gel formation
- Growth of equilibrium structures built from a large number of distinct component types
- Can Ordered Precursors Promote the Nucleation of Solid Solutions?
- Equivalence between condensation and boiling in a Lennard Jones fluid
- Is the Local Ion Density Sufficient to Drive NaCl Nucleation from the Melt and Aqueous Solution?
- Seeding Approach to Bubble Nucleation in Superheated Lennard Jones Fluids
- An atomistically informed multiscale approach to the intrusion and extrusion of water in hydrophobic nanopores
- Ideal Conductor Model: An analytical finite-size correction for non-equilibrium molecular dynamics simulations of ion transport through nanoporous membranes
- The Impact of Hydration Shell Inclusion and Chain Exclusion in the Efficacy of Reaction Coordinates for Homogeneous and Heterogeneous Ice Nucleation
- Physics and Nanofriction of Alkali Halide Solid Surfaces at the Melting Point
- Deriving Reliable Nucleation Rates from Metadynamics Simulations: Application to Yukawa Fluids