Organic Letters · 2010 · 49 citations · 21 references
Organic Charge-transfer CompoundChemical EngineeringElectronic DevicesPerylenediimide-pentathiophene SystemsElectronic MaterialsPentathiophene UnitsOrganic ElectronicsEngineeringApplied PhysicsThiophene UnitsOrganic SemiconductorOrganic ChemistryChemistryCharge Carrier TransportCharge TransportFunctional MaterialsElectrochemistry
Perylenediimide-pentathiophene systems with varied architecture of thiophene units were synthesized. The photophysical, electrochemical, and charge transport behavior of the synthesized compounds were studied. Both molecules showed a low band gap of ∼1.4 eV. Surprisingly, the molecule with pentathiophene attached via β-position to the PDI unit upon annealing showed a predominant hole mobility of 1 × 10(-4) cm(2) V(-1) s(-1) whereas the compound with branched pentathiophene attached via β-position showed an electron mobility of 9.8 × 10(-7) cm(2) V(-1) s(-1). This suggests that charge transport properties can be tuned by simply varying the architecture of pentathiophene units.
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