论文标题
界面如何改变超冷水的动力学?
How do interfaces alter the dynamics of supercooled water?
论文作者
论文摘要
界面接近液体水的结构可以显着偏离散装水的结构,而表面诱导的结构扰动通常会在距界面约1 nm处融合到散装值。相比之下,尽管这些结构变化已经很好地确定,但界面如何散布液体内的水分子动力学。在这里,通过对超冷的散装和界面水膜和纳米滴滴进行广泛的分子动力学模拟,我们观察到形成了持久的,空间扩展的动力学域的形成,其中平均迁移率随着距离距离距离的函数而变化。这与在散装水中观察到的动力异质性形成鲜明对比,在大量水中,这些域随着时间的推移而在空间上平均耗尽。我们还发现,水对界面的动态响应严格取决于界面的性质以及接口定义的选择。总的来说,这些结果揭示了界面水的动力学丰富性,这可以通过对界面结构或限制材料的特定修改来调整水的动态响应的前景。
The structure of liquid water in the proximity of an interface can deviate significantly from that of bulk water, with surface-induced structural perturbations typically converging to bulk values at about ~1 nm from the interface. While these structural changes are well established it is, in contrast, less clear how an interface perturbs the dynamics of water molecules within the liquid. Here, through an extensive set of molecular dynamics simulations of supercooled bulk and interfacial water films and nano-droplets, we observe the formation of persistent, spatially extended dynamical domains in which the average mobility varies as a function of the distance from the interface. This is in stark contrast with the dynamical heterogeneity observed in bulk water, where these domains average out spatially over time. We also find that the dynamical response of water to an interface depends critically on the nature of the interface and on the choice of interface definition. Overall these results reveal a richness in the dynamics of interfacial water that opens up the prospect of tuning the dynamical response of water through specific modifications of the interface structure or confining material.