Advanced Materials · 2001 · 260 citations · 0 references
EngineeringLiquid Crystalline ElastomerCentral CoreComputational ChemistryChemistrySoft MatterSimple LiquidCharge TransportElectronic StructureCharge Carrier TransportMaterials ScienceMolecular SolidDiscotic MoleculesPhysicsMolecular MaterialPhysical ChemistryQuantum ChemistryInterfacial PhenomenonNatural SciencesApplied PhysicsCondensed Matter PhysicsCentral Aromatic MacrocycleInterfacial StudyCore-size EffectElectrical Insulation
The maximum one-dimensional mobility of charge within the insulated cores of columnarly stacked discotic molecules increases with increasing size (the number of C, N, and O atoms constituting the central aromatic macrocycle, see Figure) of the central core. This relationship can serve as a design criterion for discotic materials in future molecular electronic devices.