Parametrized Models of Aqueous Free Energies of Solvation Based on Pairwise Descreening of Solute Atomic Charges from a Dielectric Medium

Gregory D. Hawkins, Christopher J. Cramer, Donald G. Truhlar
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引用次数: 767

Abstract

The pairwise descreening approximation provides a rapid computational algorithm for the evaluation of solute shape effects on electrostatic contributions to solvation energies. In this article we show that solvation models based on this algorithm are useful for predicting free energies of solvation across a wide range of solute functionalities, and we present six new general parametrizations of aqueous free energies of solvation based on this approach. The first new model is based on SM2-type atomic surface tensions, the AM1 model for the solute, and Mulliken charges. The next two new models are based on SM5-type surface tensions, either the AM1 or the PM3 model for the solute, and Mulliken charges. The final three models are based on SM5-type atomic surface tensions and are parametrized using the AM1 or the PM3 model for the solute and CM1 charges. The parametrizations are based on experimental data for a set of 219 neutral solute molecules containing a wide range of organic functional groups and the atom types H, C, N, O, F, P, S, Cl, Br, and I and on data for 42 ions containing the same elements. The average errors relative to experiment are slightly better than previous methods, butmore significantlythe computational cost is reduced for large molecules, and the methods are well suited to using analytic derivatives.

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基于介电介质中溶质原子电荷成对去除的溶剂化水自由能参数化模型
两两去筛选近似为评价溶质形状对静电对溶剂化能贡献的影响提供了一种快速的计算算法。在本文中,我们证明了基于该算法的溶剂化模型对于预测溶质官能团范围内的溶剂化自由能是有用的,并且我们基于该方法提出了六个新的水溶液溶剂化自由能的一般参数化。第一个新模型是基于sm2型原子表面张力、溶质的AM1模型和Mulliken电荷。接下来的两个新模型是基于sm5型表面张力,即溶质的AM1或PM3模型,以及Mulliken电荷。最后三个模型基于sm5型原子表面张力,并使用AM1或PM3模型对溶质和CM1电荷进行参数化。参数化是基于一组219个中性溶质分子的实验数据,这些分子含有广泛的有机官能团和原子类型H、C、N、O、F、P、S、Cl、Br和I,以及含有相同元素的42个离子的数据。相对于实验的平均误差比以前的方法略好,但更重要的是减少了大分子的计算成本,并且该方法非常适合使用解析导数。
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