Fluorescence vibronic analysis in a ladder-type conjugated polymer

The underlying vibronic structure of methyl-substituted ladder-type poly(para-phenylene) absorption and emission was investigated using temperature dependent fluorescence and site-selective fluorescence spectroscopy. The influence of Raman effects was noted under low excitation energies, and should...

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Published inChemical physics letters Vol. 472; no. 1; pp. 80 - 84
Main Authors Snedden, E.W., Thompson, R., Hintshich, S., Monkman, A.P.
Format Journal Article
LanguageEnglish
Published Elsevier B.V 06.04.2009
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Summary:The underlying vibronic structure of methyl-substituted ladder-type poly(para-phenylene) absorption and emission was investigated using temperature dependent fluorescence and site-selective fluorescence spectroscopy. The influence of Raman effects was noted under low excitation energies, and should form an important point of consideration in the interpretation of fluorescence data. The underlying vibronic structure of methyl-substituted ladder-type poly(para-phenylene) absorption and emission was investigated using temperature dependent fluorescence and site-selective fluorescence spectroscopy. Principal contributions in the vibronic manifold were identified from modelling of the data, and were found to be in good agreement with theoretical predictions after a re-evaluation of the position of the zero-phonon transition. A crossover to Raman dominated spectra at low excitation energy and temperature was observed. The influence of Raman effects should form an important point of consideration in the interpretation of fluorescence data.
ISSN:0009-2614
1873-4448
DOI:10.1016/j.cplett.2009.02.074