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BuildingWater Models: A Different Approach

机译:建造水模型:另一种方法

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摘要

Simplified classical water models are currently an indispensable component in practical atomistic simulations. Yet, despite several decades of intense research, these models are still far from perfect. Presented here is an alternative approach to constructing widely used point charge water models. In contrast to the conventional approach, we do not impose any geometry constraints on the model other than the symmetry. Instead, we optimize the distribution of point charges to best describe the “electrostatics” of the water molecule. The resulting “optimal” 3-charge, 4-point rigid water model (OPC) reproduces a comprehensive set of bulk properties significantly more accurately than commonly used rigid models: average error relative to experiment is 0.76%. Close agreement with experiment holds over a wide range of temperatures. The improvements in the proposed model extend beyond bulk properties: compared to common rigid models, predicted hydration free energies of small molecules using OPC are uniformly closer to experiment, with root-mean-square error <1 kcal/mol.
机译:简化的经典水模型目前是实际原子模拟中必不可少的组成部分。然而,尽管进行了数十年的深入研究,但这些模型仍远远不够完善。这里介绍的是一种构建广泛使用的点电荷水模型的替代方法。与传统方法相反,除了对称性之外,我们不对模型施加任何几何约束。相反,我们优化了点电荷的分布,以最好地描述水分子的“静电”。所产生的“最佳”三电荷,四点刚性水模型(OPC)与常用的刚性模型相比,可以更准确地重现一组全面的体积特性:相对于实验的平均误差为0.76%。与实验保持着紧密的联系,可以在很宽的温度范围内使用。所提出模型的改进超出了整体性质:与普通刚性模型相比,使用OPC预测的小分子水合自由能一致更接近于实验,均方根误差<1 kcal / mol。

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