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Charge Transfer Exciton in Halogen-Bridged Mixed-Valent Pt and Pd Complexes: Analysis Based on the Peierls-Hubbard Model
196
Citations
26
References
1985
Year
EngineeringCharge Transfer ExcitonPeierls-hubbard ModelExcitation Energy TransferOscillator StrengthChemistryLuminescence PropertyElectronic Excited StateCharge TransportCharge Carrier TransportInorganic ChemistryPhysicsPhotochemistryPhysical ChemistryQuantum ChemistryCrystallographyTransition Metal ChalcogenidesTrimer Ct ModelNatural SciencesApplied PhysicsClo 4Pd Complexes
Polarized reflection and luminescence have been measured for the single crystals of [MA 2 ][MX 2 A 2 ](ClO 4 ) 4 (M=Pt, Pd, X=Cl, Br, I and A=ethylenediamine, cyclohexanediamine). The strong absorption bands due to the charge-transfer (CT) exciton transitions between the mixed-valent metal ions have been investigated in detail in the visible or infrared energy regions. The dependence of the CT excitation energies on the species M and X is shown to be consistent with the prediction by the Peierls-Hubbard model which incorporates the effect of the electron-electron correlation on inter-metal sites. The oscillator strength of the CT excitons are observed to be enhanced by substituting heavier halogen ions. This enhancement is interpreted by a halogen-linked super-transfer mechanism. The unusually large values of the oscillator strength can be qualitatively explained in terms of the trimer CT model.
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