Glass transition and layering effects in confined water: a computer simulation study
arXiv:cond-mat/0010147 · doi:10.1063/1.1328073
Abstract
Single particle dynamics of water confined in a nanopore is studied through Computer Molecular Dynamics. The pore is modeled to represent the average properties of a pore of Vycor glass. Dynamics is analyzed at different hydration levels and upon supercooling. At all hydration levels and all temperatures investigated a layering effect is observed due to the strong hydrophilicity of the substrate. The time density correlators show, already at ambient temperature, strong deviations from the Debye and the stretched exponential behavior. Both on decreasing hydration level and upon supercooling we find features that can be related to the cage effect typical of a supercooled liquid undergoing a kinetic glass transition. Nonetheless the behavior predicted by Mode Coupling Theory can be observed only by carrying out a proper shell analysis of the density correlators. Water molecules within the first two layers from the substrate are in a glassy state already at ambient temperature (bound water). The remaining subset of molecules (free water) undergoes a kinetic glass transition; the relaxation of the density correlators agree with the main predictions of the theory. From our data we can predict the temperature of structural arrest of free water.
14 pages, 15 figures inserted in the text, to be published in J. Chem. Phys. (2000)
References in corpus (8)
- Inherent Structure Entropy of Supercooled Liquids
- Dynamics of simulated water under pressure
- Supercooled confined water and the Mode Coupling crossover temperature
- Instantaneous Normal Mode Analysis of Supercooled Water
- Molecular mode-coupling theory for supercooled liquids: Application to water
- Role of the unstable directions in the equilibrium and aging dynamics of supercooled liquids
- Non-exponential kinetic behavior of confined water
- Single particle slow dynamics of confined water
Cited by in corpus (31)
- Thermodynamics, Structure, and Dynamics of Water Confined between Hydrophobic Plates
- Random Close Packing of Disks and Spheres in Confined Geometries
- Liquid-glass transition of a fluid confined in a disordered porous matrix: A mode-coupling theory
- Layer Analysis of the Structure of Water Confined in Vycor Glass
- Amorphous silica modeled with truncated and screened Coulomb interactions: A molecular dynamics simulation study
- Mode-coupling theory for the slow collective dynamics of fluids adsorbed in disordered porous media
- Confined water in the low hydration regime
- Effect of water-wall interaction potential on the properties of nanoconfined water
- Water Transport through Carbon Nanotubes with the Radial Breathing Mode
- Hydraulic Transport Across Hydrophilic and Hydrophobic Nanopores: Flow Experiments with Water and n-Hexane
- Mode-coupling theory of the glass transition for confined fluids
- Anomalous dynamics of confined water at low hydration
- A water-like model under confinement for hydrophobic and hydrophilic particle-plate interaction potentials
- Fast Water Channeling across Carbon Nanotubes in Far Infrared Terahertz Electric Fields
- Capillary Adhesion at the Nanometer Scale
- Structural properties and liquid spinodal of water confined in a hydrophobic environment
- Absence of a Diffusion Anomaly in Water Perpendicular to Hydrophobic Nanoconfining Walls
- Slow dynamics of a confined supercooled binary mixture: direct space analysis
- A comparative study on bulk and nanoconfined water by time-resolved optical Kerr effect spectroscopy
- Mode Coupling relaxation scenario in a confined glass former
- Light mediated emergence of surface patterns in azopolymers at low temperatures
- Tagged-particle motion in a dense confined liquid
- Slow dynamics of a confined supercooled binary mixture II: Q space analysis
- Glassy dynamics in confinement: Planar and bulk limit of the mode-coupling theory
- Double dynamical regime of confined water
- On the influence of the intermolecular potential on the wetting properties of water on silica surfaces
- Supercooling and freezing processes in nanoconfined water by time-resolved optical Kerr effect spectroscopy
- Mode coupling behavior of a Lennard Jones binary mixture: a comparison between bulk and confined phases
- Hydrogen bond analysis of confined water in mesoporous silica using the reactive force field
- Inherent Structures and Kauzmann Temperature of Confined Liquids
- THz Dynamics of Nanoconfined Water by Ultrafast Optical Spectroscopy