4.6 Article

Phase Transitions of Water in Graphite and Mica Pores

Journal

JOURNAL OF PHYSICAL CHEMISTRY C
Volume 115, Issue 25, Pages 12448-12457

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp2003563

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Funding

  1. Department of Science and Technology, Govt. of India [SR/S3/CE/061/2009]
  2. U.S. National Science Foundation [CHE-0626259]
  3. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences [ERKCC61]

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We report all-atom molecular dynamics simulations of water confined in graphite and mica slit pores of variable size ranging from 10 to 60 angstrom. For each pore size, we demonstrate that the confinement not only reduces the critical temperature of the water but also introduces inhomogeneity in the system that, in turn, results in different vapor liquid coexistence densities at different layers of the pore. We report, in detail, the contribution of different layers toward the vapor liquid phase diagram of the confined water in graphite and mica slit pores. We also present the hydrogen bonding (HB) distribution in various layers and the ordering of water molecules near the surface of pore. Bond orientational order calculations of water near the surface of the pores indicate that water molecules tend to order near the mica surface whereas the ordering is absent for the case of graphite pores.

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