Remsing Richard C, Duignan Timothy T, Baer Marcel D, Schenter Gregory K, Mundy Christopher J, Weeks John D
Institute for Computational Molecular Science , Temple University , Philadelphia , Pennsylvania 19122 , United States.
Chemical and Materials Science Division , Pacific Northwest National Laboratory , Richland , Washington , United States.
J Phys Chem B. 2018 Apr 5;122(13):3519-3527. doi: 10.1021/acs.jpcb.7b10722. Epub 2018 Feb 9.
Understanding the nature of ionic hydration at a fundamental level has eluded scientists despite intense interest for nearly a century. In particular, the microscopic origins of the asymmetry of ion solvation thermodynamics with respect to the sign of the ionic charge remains a mystery. Here, we determine the response of accurate quantum mechanical water models to strong nanoscale solvation forces arising from excluded volumes and ionic electrostatic fields. This is compared to the predictions of two important limiting classes of classical models of water with fixed point changes, differing in their treatment of "lone pair" electrons. Using the quantum water model as our standard of accuracy, we find that a single fixed classical treatment of lone pair electrons cannot accurately describe solvation of both apolar and cationic solutes, emphasizing the need for a more flexible description of local electronic effects in solvation processes. However, we explicitly show that all water models studied respond to weak long-ranged electrostatic perturbations in a manner that follows macroscopic dielectric continuum models, as would be expected. We emphasize the importance of these findings in the context of realistic ion models, using density functional theory and empirical models, and discuss the implications of our results for quantitatively accurate reduced descriptions of solvation in dielectric media.
尽管近一个世纪以来一直备受关注,但从根本层面理解离子水合的本质仍让科学家们捉摸不透。特别是,离子溶剂化热力学相对于离子电荷符号的不对称性的微观起源仍是一个谜。在这里,我们确定了精确的量子力学水模型对由排斥体积和离子静电场产生的强纳米级溶剂化力的响应。并将其与两种重要的具有固定点变化的经典水模型的预测进行比较,这两种模型在“孤对”电子的处理上有所不同。以量子水模型作为我们的精度标准,我们发现对孤对电子进行单一固定的经典处理无法准确描述非极性和阳离子溶质的溶剂化,这强调了在溶剂化过程中需要对局部电子效应进行更灵活的描述。然而,我们明确表明,所有研究的水模型对弱长程静电扰动的响应方式都遵循宏观介电连续介质模型,这是预期的。我们在现实离子模型的背景下,利用密度泛函理论和经验模型强调了这些发现的重要性,并讨论了我们的结果对介电介质中溶剂化的定量精确简化描述的影响。