Особливості процесів перенесення енергії синглетного електронного збудження в плівках Alq3

The absorption and luminescence of new boron-containing dyes in two-component films of Alq3 (matrix)-dye(impurity) (obtained by the method of thermal vacuum deposition) are studied. The comparison of the spectra of absorption, fluorescence, and fluorescence excitation of a dyes in one-component solu...

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Bibliographic Details
Date:2020
Main Authors: Navozenko, O. M., Yashchuk, V. M., Piryatinski, Yu. P., Gudeika, D., Naumenko, A. P., Slominskii, Yu. L.
Format: Article
Language:English
Published: Publishing house "Academperiodika" 2020
Online Access:https://ujp.bitp.kiev.ua/index.php/ujp/article/view/2020023
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Journal Title:Ukrainian Journal of Physics

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Ukrainian Journal of Physics
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Summary:The absorption and luminescence of new boron-containing dyes in two-component films of Alq3 (matrix)-dye(impurity) (obtained by the method of thermal vacuum deposition) are studied. The comparison of the spectra of absorption, fluorescence, and fluorescence excitation of a dyes in one-component solutions and double-component films shows the existence of the effective electronic excitation energy transfer (EEET) from the matrix to dye molecules. Time-resolved spectra of two-component films also manifest strong EEET in these systems. For the estimation of the average exciton spreading length in Alq3 films, the diffusion model of the motion of singlet excitons is used. The diffusion coefficient is evaluated using time-resolved spectroscopy. The optimum concentrations of dyes in a light-emitting layer of OLED are evaluated based on experimental data and the used model of EEET.