Galván I Fdez, Martín M E, Aguilar M A, Ruiz-López M F
Departamento de Química Física, Facultad de Ciencias, Universidad de Extremadura, Avenida de Elvas s/n, 06071 Badajoz, Spain.
J Chem Phys. 2006 Jun 7;124(21):214504. doi: 10.1063/1.2199528.
A critical comparison of widely used solvation models is reported. It is illustrated by a study of the triazene molecule in liquid water. We consider the following approaches: (1) a continuum model based on multicentric multipole expansions of the charge distribution, (2) the averaged solvent electrostatic potential from molecular dynamics (ASEP/MD) method, and (3) molecular dynamics simulations using a combined quantum mechanics/molecular mechanics potential (QM/MM/MD). We find that the solvation induces appreciable changes in the geometry and charge distribution of triazene. These changes are only qualitatively reproduced by the dielectric continuum model, which clearly underestimates induced dipole moments and solute-solvent interaction energy. We also show that the use of effective point charges placed on solute nuclei during the classical simulations may cause significant errors in the description of the solvent structure. The addition of charges representing nitrogen atom lone pairs is compulsory to reproduce the QM/MM/MD simulation results. Moreover, our results validate the use of the mean field approximation in the study of solvent effects. A major conclusion of this study is that the ASEP/MD method constitutes a reliable alternative to the much more computationally demanding QM/MM/MD methods.
本文报道了对广泛使用的溶剂化模型的批判性比较。通过对液态水中三氮烯分子的研究进行了说明。我们考虑以下方法:(1)基于电荷分布多中心多极展开的连续介质模型;(2)分子动力学平均溶剂静电势(ASEP/MD)方法;(3)使用组合量子力学/分子力学势(QM/MM/MD)的分子动力学模拟。我们发现溶剂化会引起三氮烯几何结构和电荷分布的显著变化。这些变化仅被介电连续介质模型定性地再现,该模型明显低估了诱导偶极矩和溶质 - 溶剂相互作用能。我们还表明,在经典模拟过程中在溶质原子核上放置有效点电荷可能会在溶剂结构描述中导致显著误差。添加代表氮原子孤对的电荷对于再现QM/MM/MD模拟结果是必不可少的。此外,我们的结果验证了在溶剂效应研究中使用平均场近似的合理性。本研究的一个主要结论是,ASEP/MD方法是计算要求高得多的QM/MM/MD方法的可靠替代方法。