We have investigated the photoluminescence properties of porphyrin-based erbium and gadolinium complexes at different levels of halogen substitution. Both the intensity and the decay time of the erbium near-infrared emission correlate with the degree of the halogenation. Conversely, no clear correlation is found with the triplet-state energy levels nor with the intensity of the residual visible emission. Such findings confirm that the key role in the low efficiency of the near-infrared emission is played by the nonradiative quenching of the erbium emitting level due to the vibrational modes of the surrounding C-H bonds
Pizzoferrato, R., Francini, R., Pietrantoni, S., Paolesse, R., Mandoj, F., Monguzzi, A., et al. (2010). Effects of progressive halogene substitution on the photoluminescence properties of an erbium-porphyrin complex. JOURNAL OF PHYSICAL CHEMISTRY. A, MOLECULES, SPECTROSCOPY, KINETICS, ENVIRONMENT, & GENERAL THEORY, 114(12), 4163-4168 [0.1021/jp9119183].
Effects of progressive halogene substitution on the photoluminescence properties of an erbium-porphyrin complex
PIZZOFERRATO, ROBERTO;FRANCINI, ROBERTO;PAOLESSE, ROBERTO;
2010-01-01
Abstract
We have investigated the photoluminescence properties of porphyrin-based erbium and gadolinium complexes at different levels of halogen substitution. Both the intensity and the decay time of the erbium near-infrared emission correlate with the degree of the halogenation. Conversely, no clear correlation is found with the triplet-state energy levels nor with the intensity of the residual visible emission. Such findings confirm that the key role in the low efficiency of the near-infrared emission is played by the nonradiative quenching of the erbium emitting level due to the vibrational modes of the surrounding C-H bondsFile | Dimensione | Formato | |
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