Publication | Closed Access
Upconversion-induced fluorescence in multicomponent systems: Steady-state excitation power threshold
491
Citations
23
References
2008
Year
EngineeringMolecular BiologyExcitation Energy TransferUpconversion-induced FluorescenceComputational ChemistryChemistryElectronic Excited StateEfficient Upconversion GenerationThermally Activated Delayed FluorescenceBiophysicsPhotonicsUpconversion-induced Delayed FluorescencePhotochemistryUpconversion LuminescenceQuantum ChemistryTriplet Bimolecular AnnihilationExcited State PropertyNatural SciencesChemical KineticsPhosphorescence
We have analyzed the dynamics of the upconversion-induced delayed fluorescence for a model multicomponent organic system, in which high concentrations of triplet states can be sustained in steady-state conditions. At different excitation powers, two regimes have been identified depending on the main deactivation channel for the triplets, namely, the spontaneous decay and the bimolecular annihilation. The excitation power density at which triplet bimolecular annihilation becomes dominant is the threshold $({I}_{\text{th}})$ to have efficient upconversion generation. The simple equation obtained for ${I}_{\text{th}}$ allows us to predict the theoretical efficiency of a generic system on the basis of few parameters of the constituent molecules.
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