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Thermally Activated Delayed Fluorescence: Polarity, Rigidity, and Disorder in Condensed Phases.


ABSTRACT: We present a detailed and comprehensive picture of the photophysics of thermally activated delayed fluorescence (TADF). The approach relies on a few-state model, parametrized ab initio on a prototypical TADF dye, that explicitly accounts for the nonadiabatic coupling between electrons and vibrational and conformational motion, crucial to properly address (reverse) intersystem crossing rates. The Onsager model is exploited to account for the medium polarity and polarizability, with careful consideration of the different time scales of relevant degrees of freedom. TADF photophysics is then quantitatively addressed in a coherent and exhaustive approach that accurately reproduces the complex temporal evolution of emission spectra in liquid solvents as well as in solid organic matrices. The different rigidity of the two environments is responsible for the appearance in matrices of important inhomogeneous broadening phenomena that are ascribed to the intertwined contribution from (quasi)static conformational and dielectric disorder.

SUBMITTER: Phan Huu DKA 

PROVIDER: S-EPMC9413221 | biostudies-literature | 2022 Aug

REPOSITORIES: biostudies-literature

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Thermally Activated Delayed Fluorescence: Polarity, Rigidity, and Disorder in Condensed Phases.

Phan Huu D K Andrea DKA   Saseendran Sangeeth S   Dhali Rama R   Franca Larissa Gomes LG   Stavrou Kleitos K   Monkman Andrew A   Painelli Anna A  

Journal of the American Chemical Society 20220809 33


We present a detailed and comprehensive picture of the photophysics of thermally activated delayed fluorescence (TADF). The approach relies on a few-state model, parametrized <i>ab initio</i> on a prototypical TADF dye, that explicitly accounts for the nonadiabatic coupling between electrons and vibrational and conformational motion, crucial to properly address (reverse) intersystem crossing rates. The Onsager model is exploited to account for the medium polarity and polarizability, with careful  ...[more]

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