Rick Steven W
Department of Chemistry, University of New Orleans, New Orleans, Louisiana 70148, USA.
J Chem Phys. 2004 Apr 1;120(13):6085-93. doi: 10.1063/1.1652434.
The five-site transferable interaction potential (TIP5P) for water is most accurate at reproducing experimental data when used with a simple spherical cutoff for the long-ranged electrostatic interactions. When used with other methods for treating long-ranged interactions, the model is considerably less accurate. With small modifications, a new TIP5P-like potential can be made which is very accurate for liquid water when used with Ewald sums, a more physical and increasingly more commonly used method for treating long-ranged electrostatic interactions. The new model demonstrates a density maximum near 4 degrees C, like the TIP5P model, and otherwise is similar to the TIP5P model for thermodynamic, dielectric, and dynamical properties of liquid water over a range of temperatures and densities. An analysis of this and other commonly used water models reveals how the quadrupole moment of a model can influence the dielectric response of liquid water.
水的五点可转移相互作用势(TIP5P)在用于长程静电相互作用的简单球形截断时,在重现实验数据方面最为准确。当与其他处理长程相互作用的方法一起使用时,该模型的准确性会大大降低。通过微小修改,可以构建一种新的类似TIP5P的势,当与埃瓦尔德求和(一种更符合物理实际且越来越常用的处理长程静电相互作用的方法)一起使用时,对于液态水非常准确。新模型与TIP5P模型一样,在4摄氏度附近表现出密度最大值,并且在一系列温度和密度范围内,液态水的热力学、介电和动力学性质方面与TIP5P模型相似。对该模型和其他常用水模型的分析揭示了模型的四极矩如何影响液态水的介电响应。