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Liquid-solid and solid-solid phase transition of monolayer water: High-density rhombic monolayer ice

机译:单层水的液固和固固相变:高密度菱形单层冰

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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-hydrogenoxygen 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.
机译:通过分子动力学模拟研究了限制在两个平行疏水表面之间的单层水的液-固和固-固相变。所考虑的固相是高密度菱形单层冰。基于计算出的自由能表面,发现在狭缝纳米孔的一定宽度下,单层水不仅表现出高凝固点,而且表现出对结晶的低能垒。此外,通过分析氧-氢-氧角度分布和氧-氢径向分布,将高密度单层冰分为平冰或褶皱冰。扁平冰和褶皱冰之间的过渡反映了水-壁相互作用与水分子之间的静电相互作用之间的权衡。

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