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Randomly constrained orientational order in porous glass
217
Citations
19
References
1993
Year
Pore StructureEngineeringPhysicsGlass TransitionMechanicsNatural SciencesGlass-forming LiquidApplied PhysicsMagnetic ResonanceGlass MaterialRheologyPhysical ChemistryCrystal FormationChemistrySoft MatterVycor GlassCrystallographyPorous Glass
Magnetic resonance and calorimetric studies of 4'-n-pentyl-4-cyanobiphenyl confined to Vycor glass, a random network of pores with average diameter \ensuremath{\sim}70 \AA{}, are reported. Under such severely constrained ocnditions, the nematic-to-isotropic transition is replaced by a continuous evolution of orientational order in the pores. Our findings are explained by a Landau type of model where the liquid crystal is confined to independent pore segments, suggesting that the glassylike orientational order is to a large extend locally determined.
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