Faculty of Chemistry and Chemical Technology, University of Ljubljana, Slovenia.
J Phys Chem B. 2012 May 31;116(21):6177-86. doi: 10.1021/jp300743a. Epub 2012 May 21.
Water is an unusual liquid in its solvation properties. Here, we model the process of transferring a nonpolar solute into water. Our goal was to capture the physical balance between water's hydrogen bonding and van der Waals interactions in a model that is simple enough to be nearly analytical and not heavily computational. We develop a 2-dimensional Mercedes-Benz-like model of water with which we compute the free energy, enthalpy, entropy, and the heat capacity of transfer as a function of temperature, pressure, and solute size. As validation, we find that this model gives the same trends as Monte Carlo simulations of the underlying 2D model and gives qualitative agreement with experiments. The advantages of this model are that it gives simple insights and that computational time is negligible. It may provide a useful starting point for developing more efficient and more realistic 3D models of aqueous solvation.
水在其溶剂化性质方面是一种不寻常的液体。在这里,我们模拟将非极性溶质转移到水中的过程。我们的目标是在一个模型中捕捉到水的氢键和范德华相互作用之间的物理平衡,该模型简单到几乎可以进行分析,而不需要大量的计算。我们开发了一种类似于 2D 奔驰汽车的水模型,并用它来计算自由能、焓、熵和转移热容作为温度、压力和溶质尺寸的函数。作为验证,我们发现该模型给出了与基础 2D 模型的蒙特卡罗模拟相同的趋势,并与实验定性一致。该模型的优点是它提供了简单的见解,并且计算时间可以忽略不计。它可能为开发更有效和更现实的水溶液溶剂化 3D 模型提供一个有用的起点。