AA-stacked bilayer square ice between graphene layers

Water confined between two graphene layers with a separation of a few [Angstrom] forms a layered two-dimensional ice structure. Using large scale molecular dynamics simulations with the adoptable ReaxFF interatomic potential we found that flat monolayer ice with a rhombic-square structure nucleates...

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Veröffentlicht in:Physical review. B 2015-12, Vol.92 (24), Article 245428
Hauptverfasser: Sobrino Fernandez Mario, M., Neek-Amal, M., Peeters, F. M.
Format: Artikel
Sprache:eng
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Zusammenfassung:Water confined between two graphene layers with a separation of a few [Angstrom] forms a layered two-dimensional ice structure. Using large scale molecular dynamics simulations with the adoptable ReaxFF interatomic potential we found that flat monolayer ice with a rhombic-square structure nucleates between the graphene layers which is nonpolar and nonferroelectric. We provide different energetic considerations and H-bonding results that explain the interlayer and intralayer properties of two-dimensional ice. The controversial AA stacking found experimentally [Algara-Siller et al., Nature (London) 519, 443 (2015) (http://dx.doi.org/10.1038/nature14295)] is consistent with our minimum-energy crystal structure of bilayer ice. Furthermore, we predict that an odd number of layers of ice has the same lattice structure as monolayer ice, while an even number of ice layers exhibits the square ice AA stacking of bilayer ice.
ISSN:1098-0121
2469-9950
1550-235X
2469-9969
DOI:10.1103/PhysRevB.92.245428