Publication | Closed Access
Glasslike Transition of a Confined Simple Fluid
255
Citations
25
References
1996
Year
EngineeringGlass-forming LiquidFluid MechanicsLiquid Crystalline ElastomerSimple LiquidSoft MatterLinear Shear ViscoelasticityGlass TransitionBulk FluidRheologySimple Globular-shaped LiquidGlasslike TransitionBiophysicsMaterials SciencePhysicsSurface TensionPolymer SolutionInterfacial PhenomenonPolymer ScienceApplied Physics
A simple globular-shaped liquid (octamethylcyclotetrasiloxane, OMCTS) was placed between two solid plates at variable spacings comparable to the size of this molecule and the linear shear viscoelasticity of the confined interfacial film was measured. Strong monotonic increase of the shear relaxation time, elastic modulus, and effective viscosity were observed at spacings less than about 10 molecular dimensions. Frequency dependence showed good superposition at different film thickness. The observed smooth transition to solidity is inconsistent with a first-order transition from bulk fluid to solidity.
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