Quenching of excited singlet and triplet states of some polyfused arenes by dihalobenzenes.
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概要
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External heavy atom effect on the emission spectra of naphthalene, phenanthrene, and chrysene by perturbers dihalobenzenes are investigated to estimate different nonradiative rate constants associated with the depletion of the singlet and the triplet states of the fluorescers. The bimolecular fluorescence quenching rate constant <I>k</I><SUB>q</SUB> has been evaluated at 300 K by applying Stern–Volmer relation. The dihalobenzene quenchers have triplet states lying below the singlet states of the fluorescers and the overall quenching rate <I>k</I><SUB>q</SUB> is composed of two rate constants, namely, the intramolecular intersystem crossing rate <I>k</I><SUB>q</SUB><SUP>ISC</SUP> and the singlet–triplet energy transfer rate constant <I>k</I><SUB>q</SUB><SUP>ST</SUP>. The relative magnitudes of the two rate constants <I>k</I><SUB>q</SUB><SUP>ISC</SUP> and <I>k</I><SUB>q</SUB><SUP>ST</SUP> have been examined in the light of the energy conditions controlling the associated processes. At 77 K, the phosphorescence decay curve of the fluorescers in the presence of dihalobenzenes is biexponential and the triplet decay of the perturbed fraction of the fluorescers is exponential. It is concluded that at the low temperature, heavy atom interaction in the systems studied mainly proceeds through CT mechanism. Speculative suggestion has been made to account for enhancement of phosphorescence emission of polyfused arenes in EtOH solution.
- 公益社団法人 日本化学会の論文
著者
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Ganguly T.
Department Of Botany Bose Institute
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BANERJEE S.
Department of Biochemistry, University College of Science
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Mallik G.
Department of Spectroscopy, Indian Association for the Cultivation of Science
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Pal T.
Department of Spectroscopy, Indian Association for the Cultivation of Science
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