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Anomalous Stability of Two-Dimensional Ice Confined in Hydrophobic Nanopores

机译:疏水性纳米孔局限性的二维冰的异常稳定性

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摘要

The freezing of water mostly proceeds via heterogeneous ice nucleation, a process in which an effective nucleation medium not only expedites ice crystallization but also may effectively direct the polymorph selection of ice. Here, we show that water confined within a hydrophobic slit nanopore exhibits a freezing behavior strongly distinguished from its bulk counterpart. Such a difference is reflected by a strong, non-monotonic pore size dependence of freezing temperature but, more surprisingly, by an unexpected stacking ordering of crystallized two-dimensional ice containing just a few ice layers. In particular, confined trilayer ice is found to exclusively crystallize into a well-ordered, hexagonal stacking sequence despite the fact that nanopore exerts no explicit constraint on stacking order. The absence of cubic stacking sequence is found to be originated from the intrinsically lower thermodynamic stability of cubic ice over hexagonal ice at the interface, which contrasts sharply the nearly degenerated stability of bulk hexagonal and cubic ices. Detailed examination clearly reveals that the divergence is attributed to the inherent difference between the two ice polymorphs in their surface phonon modes, which is further found to generically occur at both hydrophobic and hydrophilic surfaces.
机译:冻结水主要通过异质冰成核来进行,该方法是一种工艺,其中有效的成核介质不仅加快冰结晶,而且可以有效地指导冰的多晶型选择。在这里,我们表明疏水性狭缝纳米孔内限制的水表现出强烈区分其散装对应物的冷冻行为。这种差异被强烈,非单调的孔径依赖性反射冷冻温度但更令人惊讶地,通过含有几个夹层的结晶二维冰的意外堆叠排序。特别地,发现狭窄的三层冰被专门地结晶到一个有序的六边形堆叠序列中,尽管纳米孔对堆叠顺序发挥明确限制的事实。发现没有立方堆叠序列的源自立方冰在界面处的六边形冰上的本质上较低的热力学稳定性,其对比致疱六边形和立方冰的几乎退化的稳定性。详细检查清楚地表明,分歧归因于其表面声子模式中的两种冰多晶型物之间的固有差异,这进一步发现在疏水性和亲水性表面上几乎地发生。

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