Publication | Closed Access
Ordering layers of [bmim][PF6] ionic liquid on graphite surfaces: Molecular dynamics simulation
186
Citations
66
References
2008
Year
Materials ScienceIonic LiquidGraphene NanomeshesSolid-state IonicEngineeringInterface ChemistrySurface ScienceApplied PhysicsGraphite SurfacesOrdered Il LayersGrapheneIonic ConductorPhysical ChemistryMolecular Dynamics SimulationInterfacial StudyChemistryMolecular DynamicsIl Layers
Microscopic structures of room temperature ionic liquid (IL) [bmim][PF6] on hydrophobic graphite surfaces have been studied in detail by molecular dynamics simulation. It is clearly shown that both the mass and electron densities of the surface adsorbed ionic liquid are oscillatory, and the first peak adjacent to the graphite surface is considerably higher than others, corresponding to a solidlike IL bottom layer of 6 angstroms thick. Three IL layers are indicated between the graphite surface and the inner bulk IL liquid. The individually simulated properties of single-, double-, and triple-IL layers on the graphite surface are very similar to those of the layers between the graphite surface and the bulk liquid, indicating an insignificant effect of vapor-IL interface on the ordered IL layers. The simulation also indicates that the imidazolium ring and butyl tail of the cation (bmim+) of the IL bottom layer lie flat on the graphite surface.
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