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- W2011053873 abstract "The energy transfer from photoexcited 1,3-dioctylalloxazine (DOA) to dye cations (proflavine, PF+, and acriflavine, AF+) has been investigated in aqueous solutions containing anionic sodium dodecyl sulfate, SDS, micelles. The energy transfer efficiency smoothly varies with the concentration of SDS above the critical micelle concentration of SDS. The experimental data can be interpreted in terms of the probability of binding both donor and acceptor molecules in the same micelle. The singlet energy of the excited donor at the micelle interior appears to be efficiently delivered to the acceptor cation at the micellar surface by the Förster-type induced resonance mechanism. Die Energieübertragung von photoangeregtem 1,3-Dioctylalloxazin (DOA) auf Farbstoffkationen (Proflavin, PF+ und Acriflavin, AF+) wurde in wäßrigen Losungen, die anionische Mizellen aus Natriumdodecylsulfat, SDS, enthielten, untersucht. Oberhalb der kritischen Mizellkonzentration änderte sich die Effizienz der Energieübertragung geringfügig mit der Konzentration von SDS. Die experimentellen Ergebnisse können aus der Wahrscheinlichkeit, daß Akzeptor und Donor gleichzeitig an die gleiche Mizelle gebunden sind, interpretiert werden. Es zeigt sich, daß die Singulettenergie des angeregten Donors im Innern der Mizelle auf das Akzeptorkation an der Mizellenoberfläche mittels eines induzierten Resonanzmechanismus vom Förster-Typ übertragen wird." @default.
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- W2011053873 date "1980-02-01" @default.
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- W2011053873 title "Energy Transfer in Micellar Systems. Fluorescence Investigation of Energy Transfer from Dialkylalloxazine to Dye Cations in the Presence of Anionic Micelles" @default.
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- W2011053873 doi "https://doi.org/10.1002/bbpc.19800840207" @default.
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