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Formation of regioregular head‐to‐tail poly[3‐(4‐butylphenyl)thiophene] by an oxidative coupling polymerization with vanadium acetylacetonate
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2001
Year
Macromolecular ChemistryEngineeringOrganic ChemistryChemistryPolymersChemical EngineeringSeveral Polymerization TimesMacromolecular EngineeringOxidative Coupling PolymerizationHybrid MaterialsVanadium AcetylacetonatePolymer ChemistryMaterials ScienceCalculated Total EnergyPolymer AnalysisRegioregular Head‐to‐tail PolyPolymer ScienceHigh Spin DensityPolymer CharacterizationPolymerization KineticsPolymer ReactionPolymer Synthesis
Abstract The mechanism for the formation of head‐to‐tail (H–T) poly[3‐(4‐butylphenyl)thiophene] by oxidative coupling polymerization with a catalytic amount of vanadium acetylacetonate was investigated. Polymerization was carried out in the presence of vanadium acetylacetonate, trifluoromethane sulfonic acid, and trifluoroacetic anhydride under an oxygen atmosphere in 1,2‐dichloroethane at room temperature. Polymers and oligomers obtained after several polymerization times were characterized by gel permeation chromatography, IR, and NMR spectroscopies. With these findings and the reactivity of monomer and dimers based on ab initio density functional theory, the polymerization was found to proceed mainly through the formation of H–T linkages due to the high spin density at the 2‐position of 3‐(4‐butylphenyl)thiophene and the calculated total energy of dimers. © 2001 John Wiley & Sons, Inc. J Polym Sci Part A: Polym Chem 39: 2287–2295, 2001
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