论文标题
溶解盐不等于在水上施加压力
Dissolving salt is not equivalent to applying a pressure on water
论文作者
论文摘要
盐水无处不在,在地质和生理过程中起着至关重要的作用。尽管进行了几个世纪的调查,但溶解离子是否会彻底改变水的结构。基于密度功能理论,我们采用基于机器学习的分子动力学来模拟不同浓度的氯化钠,氯化钾和溴化钠溶液。所得的相互空间结构因子与中子衍射数据定量一致。在这里,我们提供了明确的证据,表明盐水中的离子不会像整洁的水对压力升高一样扭曲水结构。相反,计算的结构变化仅限于侵入氢键网络的离子第一溶剂化壳,除此之外,相对于整齐的水,氧气径向分布函数不会发生重大变化。我们的发现表明,应仔细重新审视Hofmeister系列离子溶液中溶剂的广泛引用的压力样影响。
Salt water is ubiquitous, playing crucial roles in geological and physiological processes. Despite centuries of investigations, whether or not water's structure is drastically changed by dissolved ions is still debated. Based on density functional theory, we employ machine learning based molecular dynamics to model sodium chloride, potassium chloride, and sodium bromide solutions at different concentrations. The resulting reciprocal-space structure factors agree quantitatively with neutron diffraction data. Here we provide clear evidence that the ions in salt water do not distort the structure of water in the same way as neat water responds to elevated pressure. Rather, the computed structural changes are restricted to the ionic first solvation shells intruding into the hydrogen bond network, beyond which the oxygen radial-distribution function does not undergo major change relative to neat water. Our findings suggest that the widely cited pressure-like effect on the solvent in Hofmeister series ionic solutions should be carefully revisited.