Paesani Francesco, Iuchi Satoru, Voth Gregory A
The Center for Biophysical Modeling and Simulation, Department of Chemistry, University of Utah, 315 S. 1400 E., Room 2020, Salt Lake City, Utah 84112-0850, USA.
J Chem Phys. 2007 Aug 21;127(7):074506. doi: 10.1063/1.2759484.
The importance of quantum effects as well as the accuracy of the ab initio-based polarizable TTM2.1-F force field in describing liquid water are quantitatively assessed by a detailed analysis of the temperature dependence of several thermodynamic and dynamical properties computed using the path-integral molecular dynamics and centroid molecular dynamics methods. The results show that quantum effects are not negligible even at relatively high temperatures, and their inclusion in simulations with the TTM2.1-F water model is necessary to achieve a more accurate description of the liquid properties. Comparison with the results reported in the literature for empirical, nonpolarizable force fields demonstrates that the effects of the nuclear quantization on the dielectric constant are dependent in part on how the electronic polarization is described in the underlying water model, while comparison with other ab initio-based force fields shows that the TTM2.1-F model provides an overall accurate description of liquid water. Analysis of the isotope effect on the dynamical properties does not display significant temperature dependence. This suggests that the contribution of quantum tunneling, which has been proposed as a possible cause for the different orientational dynamics observed for the HDO:H(2)O and HDO:D(2)O systems, appears to be small.
通过对使用路径积分分子动力学和质心分子动力学方法计算得到的几种热力学和动力学性质的温度依赖性进行详细分析,定量评估了量子效应的重要性以及基于从头算的可极化TTM2.1-F力场在描述液态水方面的准确性。结果表明,即使在相对较高的温度下,量子效应也不可忽略,并且在使用TTM2.1-F水模型进行模拟时考虑这些效应对于更准确地描述液体性质是必要的。与文献中报道的经验性、不可极化力场的结果进行比较表明,核量子化对介电常数的影响部分取决于基础水模型中电子极化的描述方式,而与其他基于从头算的力场进行比较表明,TTM2.1-F模型对液态水提供了总体准确的描述。对动力学性质的同位素效应分析未显示出明显的温度依赖性。这表明,作为HDO:H₂O和HDO:D₂O系统中观察到的不同取向动力学的可能原因而被提出的量子隧穿贡献似乎很小。