TIP 4 P 2005 Ice : Simulating water with two molecular states.

IF 3.1 2区 化学 Q3 CHEMISTRY, PHYSICAL
Lucía F Sedano, Carlos Vega, Eva G Noya, Eduardo Sanz
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引用次数: 0

Abstract

Rigid, non-polarizable water models are very efficient from a computational point of view, and some of them have a great ability in predicting experimental properties. There is, however, little room for improvement in simulating water with this strategy, whose main shortcoming is that water molecules do not change their interaction parameters in response to the local molecular landscape. In this work, we propose a novel modeling strategy that involves using two rigid non-polarizable models as states that water molecules can adopt depending on their molecular environment. During the simulation, molecules dynamically transition from one state to another depending on a local order parameter that quantifies some local structural feature. In particular, molecules belonging to low- and high-tetrahedral order environments are represented with the TIP4P/2005 and TIP4P/Ice rigid models, respectively. In this way, the interaction between water molecules is strengthened when they acquire a tetrahedral coordination, which can be viewed as an effective way of introducing polarization effects. We call the resulting model TIP4P2005Ice and show that it outperforms either of the rigid models that build it. This multi-state strategy only slows down simulations by a factor of 1.5 compared to using a standard non-polarizable model and holds great promise for improving simulations of water and aqueous solutions.

TIP 4p2005冰:模拟具有两种分子状态的水。
从计算的角度来看,刚性的、非极化的水模型是非常有效的,其中一些模型在预测实验性质方面有很大的能力。然而,用这种策略模拟水的改进空间很小,其主要缺点是水分子不改变其相互作用参数以响应局部分子景观。在这项工作中,我们提出了一种新的建模策略,包括使用两种刚性非极化模型作为水分子根据其分子环境可以采用的状态。在模拟过程中,分子根据量化某些局部结构特征的局部顺序参数动态地从一种状态过渡到另一种状态。特别是,属于低四面体阶和高四面体阶环境的分子分别用TIP4P/2005和TIP4P/Ice刚性模型表示。这样,当水分子获得四面体配位时,水分子之间的相互作用得到加强,这可以看作是引入极化效应的有效途径。我们将生成的模型称为TIP4P2005Ice,并表明它优于构建它的任何一个刚性模型。与使用标准的非极化模型相比,这种多态策略仅将模拟速度降低了1.5倍,并且对改善水和水溶液的模拟具有很大的希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Chemical Physics
Journal of Chemical Physics 物理-物理:原子、分子和化学物理
CiteScore
7.40
自引率
15.90%
发文量
1615
审稿时长
2 months
期刊介绍: The Journal of Chemical Physics publishes quantitative and rigorous science of long-lasting value in methods and applications of chemical physics. The Journal also publishes brief Communications of significant new findings, Perspectives on the latest advances in the field, and Special Topic issues. The Journal focuses on innovative research in experimental and theoretical areas of chemical physics, including spectroscopy, dynamics, kinetics, statistical mechanics, and quantum mechanics. In addition, topical areas such as polymers, soft matter, materials, surfaces/interfaces, and systems of biological relevance are of increasing importance. Topical coverage includes: Theoretical Methods and Algorithms Advanced Experimental Techniques Atoms, Molecules, and Clusters Liquids, Glasses, and Crystals Surfaces, Interfaces, and Materials Polymers and Soft Matter Biological Molecules and Networks.
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