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Water filling of hydrophilic nanopores
Ezequiel De La Llave
, Valeria Molinero
, Damián A. Scherlis
Universidad de Buenos Aires
University of Utah
Research output
:
Contribution to journal
›
Article
›
peer-review
48
Scopus citations
Overview
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Keyphrases
Liquid Phase
100%
Water-filling
100%
Nanopore
100%
Adsorbed Phase
100%
Liquid Plug
100%
Silica Pores
100%
Silica
50%
Condensation
50%
Water Surface
50%
Molecular Dynamics Simulation
50%
Water Molecule
50%
Water Content
50%
Hysteresis
50%
Surface Hydrophobicity
50%
Confined Fluids
50%
Phase Behavior
50%
Surface Phase
50%
Phase Coexistence
50%
Narrow Pores
50%
Pore Wall
50%
Wide-pore
50%
Surface Density
50%
Nucleation Mechanism
50%
Low Water Content
50%
Two-phase Equilibrium
50%
Hydrophilic Pore
50%
Nucleation Dynamics
50%
Small Water Clusters
50%
Water Plug
50%
Surface Saturation
50%
Capillary Condensation
50%
Material Science
Silicon Dioxide
100%
Nanopore
100%
Density
66%
Nucleation
66%
Monolayers
33%
Supersaturation
33%
Chemical Engineering
Water Content
100%