Most classical nonpolarizable ion potential models underestimate the solubility values of NaCl and KCl in water significantly. We determine Lennard-Jones parameters of Na+, K+, and Cl– that reproduce the solubility as well as the hydration free energy in dilute aqueous solutions for three water potential models, SPC/E, TIP3P, and TIP4P/2005. The ion–oxygen distance in the solution and the cation–anion distance in salt are also considered in the parametrization. In addition to the target properties, the hydration enthalpy, hydration entropy, self-diffusion coefficient, coordination number, lattice energy, enthalpy of solution, density, viscosity, and number of contact ion pairs are calculated for comparison with 17 frequently used or recentl...
The effective solvent-mediated potentials for Na+ and Cl− ions in aqueous solution were calculated i...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
Many industrial processes involve processing aqueous electrolyte solutions. There is thus a need for...
Most classical nonpolarizable ion potential models underestimate the solubility values of NaCl and K...
Countless molecular dynamics studies have relied on available ion and water force field parameters t...
The dynamic and energetic properties of the alkali and halide ions were calculated using molecular d...
Direct coexistence molecular dynamics simulations of NaCl solutions and Lennard-Jones binary mixture...
The dynamic and energetic properties of the alkali and halide ions were calculated using molecular d...
Biomolecular processes involve hydrated ions, and thus molecular simulations of such processes requi...
The poor performance of many existing nonpolarizable ion force fields is typically blamed on either ...
Biomolecular processes involve hydrated ions, and thus molecular simulations of such processes requi...
Chemical thermodynamic models of solvent and solute activities predict the equilibrium behavior of a...
The current state-of-the-art force fields (FFs) for Na+ and Cl−ions are not capable of simultaneousl...
Alkali (Li<sup>+</sup>, Na<sup>+</sup>, K<sup>+</sup>, Rb<sup>+</sup>, and Cs<sup>+</sup>) and halid...
Solubility is a fundamental property of widespread significance. Despite its importance, its efficie...
The effective solvent-mediated potentials for Na+ and Cl− ions in aqueous solution were calculated i...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
Many industrial processes involve processing aqueous electrolyte solutions. There is thus a need for...
Most classical nonpolarizable ion potential models underestimate the solubility values of NaCl and K...
Countless molecular dynamics studies have relied on available ion and water force field parameters t...
The dynamic and energetic properties of the alkali and halide ions were calculated using molecular d...
Direct coexistence molecular dynamics simulations of NaCl solutions and Lennard-Jones binary mixture...
The dynamic and energetic properties of the alkali and halide ions were calculated using molecular d...
Biomolecular processes involve hydrated ions, and thus molecular simulations of such processes requi...
The poor performance of many existing nonpolarizable ion force fields is typically blamed on either ...
Biomolecular processes involve hydrated ions, and thus molecular simulations of such processes requi...
Chemical thermodynamic models of solvent and solute activities predict the equilibrium behavior of a...
The current state-of-the-art force fields (FFs) for Na+ and Cl−ions are not capable of simultaneousl...
Alkali (Li<sup>+</sup>, Na<sup>+</sup>, K<sup>+</sup>, Rb<sup>+</sup>, and Cs<sup>+</sup>) and halid...
Solubility is a fundamental property of widespread significance. Despite its importance, its efficie...
The effective solvent-mediated potentials for Na+ and Cl− ions in aqueous solution were calculated i...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
Many industrial processes involve processing aqueous electrolyte solutions. There is thus a need for...