Publication | Closed Access
Molecular Engineering of Band Level Energies in Oligothiophenes, through Cyano-Substitutions
46
Citations
18
References
1996
Year
EngineeringOrganometallic ElectrochemistryExcitation Energy TransferOrganic ChemistryChemistryOligothiophene BackboneChemical EngineeringOrganic ElectrochemistryPhosphoreneMolecular ElectrochemistryOrganic SemiconductorOligothiophene ChainQuantum ChemistryMolecular EngineeringElectrochemistryOrganic Charge-transfer CompoundNatural SciencesApplied PhysicsElectrosynthesisConjugation LengthMolecule-based Material
Conjugated bi- and terthiophenes have been substituted with cyano groups on several positions of the oligothiophene backbone. Their oxidation and reduction have been investigated in aprotic solvent (acetonitrile) by cyclic voltammetry. Most of the 10 studied compounds show two oxidation and two reduction waves, associated with the successive injection of one and two charges in these compounds. The reversibility of the first waves allows the determination of the formal potential of the corresponding radical cation, Eox1, and radical anion, Ered1, and the calculation of an electrochemical energy gap, ΔEg = Eox1 − Ered1. The energy gap and the oxidation potential are found to be primarily dependent on the conjugation length of the oligothiophene chain, and substituents allow a further fine-tuning of the energies of the occupied and unoccupied molecular orbitals.
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