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Published on: January 24, 2014
Influence of bond flexibility on the vapor-liquid phase equilibria of water
Gabriele Raabe1, Richard J Sadus
1Institut für Thermodynamik, Technische Universität Braunschweig, Hans-Sommer-Stasse 5, 38106 Braunschweig, Germany. G.Raabe@tu-bs.de
Abstract:
The authors performed Gibbs ensemble simulations on the vapor-liquid equilibrium of water to investigate the influence of incorporating intramolecular degrees of freedom in the simple point charge (SPC) water model. Results for vapor pressures, saturation densities, heats of vaporization, and the critical point for two different flexible models are compared with data for the corresponding rigid SPC and SPC/E models. They found that the introduction of internal vibrations, and also their parametrization, has an observable effect on the prediction of the vapor-liquid coexistence curve. The flexible SPC/Fw model, although optimized to describe bulk diffusion and dielectric constants at ambient conditions, gives the best prediction of saturation densities and the critical point of the examined models.
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