• Mechanism of Exciplex Decay: The Quantum Yields and the Rate Constants of Radical Ion Formation from Exciplexes with Partial Charge Transfer
    D.N. Dogadkin, E.V. Dolotova, I.V. Soboleva, M.G. Kuzmin, V.F. Plyusnin, I.P. Pozdnyakov, V.P. Grivin, E. Vauthey, P. Brodard and O. Nicolet
    High Energy Chemistry, 38 (6) (2004), p392-400
    DOI:10.1023/B:HIEC.0000048237.12132.26 | unige:3249 | Abstract | Article PDF
The dynamics of exciplex and radical ion formation was studied in donor–acceptor systems with G * et > –0.1 eV. It was shown that the quenching of excited singlet states of aromatic molecules by electron donors in polar solvents led to the formation of radical ions via exciplex dissociation resulting to complete charge separation. Intersystem crossing and internal conversion into the ground state (back electron transfer) compete with this process. The quantum yields and the rate constants of the radical ion formation were measured.
The fluorescence decays of several exciplexes with partial charge transfer have been investigated in solvents of various polarity. The measured lifetimes are found to be in reasonable agreement with the activation enthalpy and entropy of exciplex decay obtained earlier from the temperature dependence of the exciplex emission quantum yields. For exciplexes with 9-cyanophenanthrene substantial contribution of the higher local excited state into the exciplex electronic structure is found and borrowed intensity effect enhances the exciplex emission rate constants.

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