Phase Behavior of Two-Dimensional Water Confined in Graphene Nanocapillaries

Phase Behavior of Two-Dimensional Water Confined in Graphene Nanocapillaries

Author
YinBo Zhu
Publisher
Springer Singapore;Springer
Language
English
Edition
1st ed.
Year
2020
Page
XVII, 118
ISBN
9789811579561,9789811579578
File Type
pdf
File Size
10.8 MiB

In this book, the authors use molecular dynamics simulations to conduct a comprehensive study of the compression/superheating limit and phase transition of 2D (monolayer, bilayer, and trilayer) water/ice constrained in graphene nanocapillaries. When subjected to nanoscale confinement and under ultrahigh pressure, water and ice behave quite differently than their bulk counterparts, partly because the van der Waals pressure can spark a water-to-ice transformation, known as the metastability limit of two-dimensional (2D) liquids. From a mechanical standpoint, this liquid-to-solid transformation characterizes the compression limit (or metastability limit) of 2D water. The findings presented here could help us to better understand the phase behavior of 2D confined water/ice.

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