单层
化学物理
无定形冰
冰Ih
相变
纳米孔
化学
结晶
冰晶
相(物质)
分子
过冷
结晶学
材料科学
纳米技术
热力学
有机化学
光学
无定形固体
物理
作者
Toshihiro Kaneko,Jaeil Bai,Kenji Yasuoka,Ayori Mitsutake,Xiao Cheng Zeng
摘要
Liquid-solid and solid-solid phase transitions of a monolayer water confined between two parallel hydrophobic surfaces are studied by molecular dynamics simulations. The solid phase considered is the high-density rhombic monolayer ice. Based on the computed free energy surface, it is found that at a certain width of the slit nanopore, the monolayer water exhibits not only a high freezing point but also a low energy barrier to crystallization. Moreover, through analyzing the oxygen-hydrogen-oxygen angle distribution and oxygen-hydrogen radial distribution, the high-density monolayer ice is classified as either a flat ice or a puckered ice. The transition between a flat ice and a puckered ice reflects a trade-off between the water-wall interactions and the electrostatic interactions among water molecules.
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