Sedano L F, Blazquez S, Vega C
Departamento de Química Física, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, 28040 Madrid, Spain.
J Chem Phys. 2024 Jul 28;161(4). doi: 10.1063/5.0211871.
The last generation of four center non-polarizable models of water can be divided into two groups: those reproducing the dielectric constant of water, as OPC, and those significantly underestimating its value, as TIP4P/2005. To evaluate the global performance of OPC and TIP4P/2005, we shall follow the test proposed by Vega and Abascal in 2011 evaluating about 40 properties to fairly address this comparison. The liquid-vapor and liquid-solid equilibria are computed, as well as the heat capacities, isothermal compressibilities, surface tensions, densities of different ice polymorphs, the density maximum, equations of state at high pressures, and transport properties. General aspects of the phase diagram are considered by comparing the ratios of different temperatures (namely, the temperature of maximum density, the melting temperature of hexagonal ice, and the critical temperature). The final scores are 7.2 for TIP4P/2005 and 6.3 for OPC. The results of this work strongly suggest that we have reached the limit of what can be achieved with non-polarizable models of water and that the attempt to reproduce the experimental dielectric constant deteriorates the global performance of the water force field. The reason is that the dielectric constant depends on two surfaces (potential energy and dipole moment surfaces), whereas in the absence of an electric field, all properties can be determined simply from just one surface (the potential energy surface). The consequences of the choice of the water model in the modeling of electrolytes in water are also discussed.
一组能重现水的介电常数,如OPC模型;另一组则显著低估其值,如TIP4P/2005模型。为评估OPC和TIP4P/2005的整体性能,我们将遵循Vega和Abascal在2011年提出的测试方法,评估约40种性质,以公正地进行这种比较。计算了液-气和液-固平衡,以及热容、等温压缩率、表面张力、不同冰多晶型的密度、密度最大值、高压状态方程和输运性质。通过比较不同温度的比值(即最大密度温度、六方冰的熔化温度和临界温度)来考虑相图的一般方面。TIP4P/2005的最终得分是7.2,OPC的最终得分是6.3。这项工作的结果强烈表明,我们已经达到了水的非极化模型所能达到的极限,并且试图重现实验介电常数会降低水势场的整体性能。原因是介电常数取决于两个表面(势能面和偶极矩面),而在没有电场的情况下,所有性质都可以仅从一个表面(势能面)简单确定。还讨论了水模型的选择在水中电解质建模中的影响。