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Solvent-induced interactions between hydrophobic and hydrophilic polyatomic sheets in water and hypothetical nonpolar water

机译:溶剂诱导的疏水性和亲水性多原子片在水和假想的非极性水中的相互作用

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摘要

Hydrophobic and hydrophilic interactions are two major intermolecular forces between hydrophobic nonpolar and hydrophilic polar sites of macromolecules or materials surfaces in solvents. To further understand these two interactions at the microscopic level, an idealized polyatomic model is devised, which includes hydrophobic, hydrophilic, and partially hydrophilic polyatomic planar square molecular sheets. The hydrophobic molecular sheet is composed of the Lennard-Jones particles while the hydrophilic molecular sheet consists of positive and negative charge sites. In the framework of the extended reference interaction site model integral equation theory the solvent-induced interactions (or the potential of mean forces) between two parallel molecular sheets in water and in the hypothetical nonpolar water are investigated in a systematic fashion. Such a highly idealized model allows us to isolate and to explore the important effects of molecular size, relative intermolecular position (e.g., in- or out-of-registry configuration), and hydrophilic site distribution on the hydrophobic and hydrophilic interactions in both water and the hypothetical nonpolar water. Significant insight into these effects at the molecular level is obtained. For the hydrophobic planar molecules in water we find solvent separated hydrophobic interaction becomes less favored as sheet size increases. Moreover, the contact hydrophobic interaction between two molecular sheets in the out-of-registry configuration is always most favorable. For the latter case we find it is the van der Waals attraction, rather than the hydrophobic attraction, that dominates the total interaction. We also find that in both water and the hypothetical nonpolar water the solvent-induced interaction between two hydrophobic sheets behaves similarly. One possible explanation is that the hydrophobic hydration originating from the hydrogen bonding network in water plays an insignificant role in the solvent-induced interaction, at least in the infinitely dilute aqueous solution. For hydrophilic planar molecular sheets in water, we find water-induced hydrophilic interaction is much more substantial compared with the hydrophobic one. In many cases, the hydrophilic interaction is found directly against the intermolecular force between two parallel molecular sheets in vacuum. Finally, for the partially hydrophilic planar molecules in water, a newly discovered feature is that a disperse hydrophilic site distribution gives rise to stronger solvent-induced interaction compared with the clustered hydrophilic site distribution.
机译:疏水和亲水相互作用是大分子或材料表面在溶剂中的疏水性非极性和亲水性极性位点之间的两个主要分子间力。为了在微观水平上进一步理解这两种相互作用,设计了一种理想的多原子模型,该模型包括疏水,亲水和部分亲水的多原子平面正方形分子片。疏水分子片由Lennard-Jones颗粒组成,而亲水分子片由正电荷和负电荷位组成。在扩展的参考相互作用位点模型积分方程理论的框架内,系统地研究了水和假设的非极性水中两个平行分子片之间溶剂诱导的相互作用(或平均力的势能)。这种高度理想化的模型使我们能够分离和探索分子大小,相对分子间位置(例如,配准内或配准外构型)以及亲水位点分布对水和水中的疏水和亲水相互作用的重要影响。假设的非极性水。获得了在分子水平上对这些作用的重要见解。对于水中的疏水性平面分子,我们发现随着纸张尺寸的增加,溶剂分离的疏水性相互作用变得不那么受欢迎。而且,处于套准外构型的两个分子片之间的接触疏水相互作用总是最有利的。对于后一种情况,我们发现主导整个相互作用的是范德华吸引力而不是疏水吸引力。我们还发现,在水和假想的非极性水中,两个疏水片之间的溶剂诱导的相互作用行为相似。一种可能的解释是,至少在无限稀释的水溶液中,源自水中氢键网络的疏水水合在溶剂诱导的相互作用中不起着重要作用。对于水中的亲水性平面分子片,我们发现水诱导的亲水性相互作用比疏水性的更为重要。在许多情况下,在真空中直接抵御两个平行分子片之间的分子间作用力是亲水相互作用。最后,对于水中的部分亲水性平面分子,新发现的特征是,与成簇的亲水性部位分布相比,分散的亲水性部位分布产生了更强的溶剂诱导的相互作用。

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