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Blue emitting pentacoordinated Al(<scp>iii</scp>) complexes based on 2-methylquinolin-8-olate and substituted phenolate ligands. The role of phenolate derivatives on emission and absorption properties
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Citations
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References
2005
Year
EngineeringInorganic PhotochemistryAbsorption PropertiesSynthetic PhotochemistryOrganic ChemistryChemistryLuminescence PropertyInorganic CompoundChemical EngineeringPhenolate-based LigandsInorganic ChemistryPhotochemistryBlue-emitting Pentacoordinated AlqPhenolate DerivativesSupramolecular PhotochemistryInorganic SynthesisFrontier OrbitalsOrganic Charge-transfer CompoundCoordination ComplexSubstituted Phenolate Ligands
This paper reports the synthesis, characterisation and photophysical investigation of the homologous series of blue-emitting pentacoordinated AlQ'(2)L complexes 1-6, where Q' is 2-methylquinolin-8-olate and L is a phenolate substituted in para to the oxygen donor atom. Both electron attracting and electron releasing substituents have been considered. Also binuclear complexes of formula Q'(2)Al-L'-AlQ'(2), where L' = OC(6)H(4)C(6)H(4)O, OC(6)H(4)(CH(2))(3)C(6)H(4)O and OC(6)H(4)C(CH(3))(2)C(6)H(4)C(CH(3))(2)C(6)H(4)O have been synthesised and characterised. These are interesting blue-emitting materials for OLED (organic light emitting diode) fabrication. A comparison between computational and experimental results allowed the description of the absorption and fluorescence processes. A study of the frontier orbitals involved in the electric conduction and fluorescence emission has been performed. Influences of the phenolate-based ligands on the compounds spectroscopy have been particularly taken into account.
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