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预测作为温度函数的溶剂化水相自由能。

Predicting aqueous free energies of solvation as functions of temperature.

作者信息

Chamberlin Adam C, Cramer Christopher J, Truhlar Donald G

机构信息

Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455-0431, USA.

出版信息

J Phys Chem B. 2006 Mar 23;110(11):5665-75. doi: 10.1021/jp057264y.

Abstract

This work introduces a model, solvation model 6 with temperature dependence (SM6T), to predict the temperature dependence of aqueous free energies of solvation for compounds containing H, C, and O in the range 273-373 K. In particular, we extend solvation model 6 (SM6), which was previously developed (Kelly, C. P.; Cramer, C. J.; Truhlar, D. G. J. Chem. Theory Comput. 2005, 1, 1133) for predicting aqueous free energies of solvation at 298 K, to predict the variation of the free energy of solvation relative to 298 K. Also, we describe the database of experimental aqueous free energies of solvation for compounds containing H, C, and O that was used to parametrize and test the new model. SM6T partitions the temperature dependence of the free energy of solvation into two components: the temperature dependence of the bulk electrostatic contribution to the free energy of solvation, which is computed using the generalized Born equation, and the temperature dependence of first-solvation-shell effects which is modeled using a parametrized solvent-exposed surface-area-dependent term. We found that SM6T predicts the temperature dependence of aqueous free energies of solvation with a mean unsigned error of 0.08 kcal/mol over our entire database, whereas using the experimental value at 298 K produces a mean unsigned error of 0.53 kcal/mol.

摘要

本工作引入了一种模型,即具有温度依赖性的溶剂化模型6(SM6T),用于预测273 - 373 K范围内含H、C和O化合物的水合溶剂化自由能的温度依赖性。具体而言,我们扩展了先前开发的溶剂化模型6(SM6)(Kelly, C. P.; Cramer, C. J.; Truhlar, D. G. J. Chem. Theory Comput. 2005, 1, 1133),该模型用于预测298 K时的水合溶剂化自由能,以预测相对于298 K的溶剂化自由能变化。此外,我们描述了用于对新模型进行参数化和测试的含H、C和O化合物的实验水合溶剂化自由能数据库。SM6T将溶剂化自由能的温度依赖性分为两个部分:使用广义玻恩方程计算的溶剂化自由能的本体静电贡献的温度依赖性,以及使用参数化的与溶剂暴露表面积相关的项建模的第一溶剂化层效应的温度依赖性。我们发现,在我们的整个数据库中,SM6T预测水合溶剂化自由能的温度依赖性的平均绝对误差为0.08 kcal/mol,而使用298 K时的实验值产生的平均绝对误差为0.53 kcal/mol。

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