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Conformational, Host, and Vibrational Effects Giving Rise to Dynamic TADF Behavior in the Through-Space Charge Transfer, Triptycene Bridged Acridine-Triazine Donor Acceptor TADF Molecule TpAT-tFFO

[Image: see text] We present a joint experimental and theoretical study of the through-space charge transfer (CT) TADF molecule TpAT-tFFO. The measured fluorescence has a singular Gaussian line shape but two decay components, coming from two distinct molecular CT conformers, energetically only 20 me...

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Autores principales: Miranda-Salinas, Hector, Rodriguez-Serrano, Angela, Kaminski, Jeremy M., Dinkelbach, Fabian, Hiromichi, Nakagawa, Kusakabe, Yu, Kaji, Hironori, Marian, Christel M., Monkman, Andrew P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10184167/
https://www.ncbi.nlm.nih.gov/pubmed/37197385
http://dx.doi.org/10.1021/acs.jpcc.2c07529
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author Miranda-Salinas, Hector
Rodriguez-Serrano, Angela
Kaminski, Jeremy M.
Dinkelbach, Fabian
Hiromichi, Nakagawa
Kusakabe, Yu
Kaji, Hironori
Marian, Christel M.
Monkman, Andrew P.
author_facet Miranda-Salinas, Hector
Rodriguez-Serrano, Angela
Kaminski, Jeremy M.
Dinkelbach, Fabian
Hiromichi, Nakagawa
Kusakabe, Yu
Kaji, Hironori
Marian, Christel M.
Monkman, Andrew P.
author_sort Miranda-Salinas, Hector
collection PubMed
description [Image: see text] We present a joint experimental and theoretical study of the through-space charge transfer (CT) TADF molecule TpAT-tFFO. The measured fluorescence has a singular Gaussian line shape but two decay components, coming from two distinct molecular CT conformers, energetically only 20 meV apart. We determined the intersystem crossing rate (1 × 10(7) s(–1)) to be 1 order of magnitude faster than radiative decay, and prompt emission (PF) is therefore quenched within 30 ns, leaving delayed fluorescence (DF) observable from 30 ns onward as the measured reverse intersystem crossing (rISC) rate is >1 × 10(6) s(–1), yielding a DF/PF ratio >98%. Time-resolved emission spectra measured between 30 ns and 900 ms in films show no change in the spectral band shape, but between 50 and 400 ms, we observe a ca. 65 meV red shift of the emission, ascribed to the DF to phosphorescence transition, with the phosphorescence (lifetime >1 s) emanating from the lowest (3)CT state. A host-independent thermal activation energy of 16 meV is found, indicating that small-amplitude vibrational motions (∼140 cm(–1)) of the donor with respect to the acceptor dominate rISC. TpAT-tFFO photophysics is dynamic, and these vibrational motions drive the molecule between maximal rISC rate and high radiative decay configurations so that the molecule can be thought to be “self-optimizing” for the best TADF performance.
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spelling pubmed-101841672023-05-16 Conformational, Host, and Vibrational Effects Giving Rise to Dynamic TADF Behavior in the Through-Space Charge Transfer, Triptycene Bridged Acridine-Triazine Donor Acceptor TADF Molecule TpAT-tFFO Miranda-Salinas, Hector Rodriguez-Serrano, Angela Kaminski, Jeremy M. Dinkelbach, Fabian Hiromichi, Nakagawa Kusakabe, Yu Kaji, Hironori Marian, Christel M. Monkman, Andrew P. J Phys Chem C Nanomater Interfaces [Image: see text] We present a joint experimental and theoretical study of the through-space charge transfer (CT) TADF molecule TpAT-tFFO. The measured fluorescence has a singular Gaussian line shape but two decay components, coming from two distinct molecular CT conformers, energetically only 20 meV apart. We determined the intersystem crossing rate (1 × 10(7) s(–1)) to be 1 order of magnitude faster than radiative decay, and prompt emission (PF) is therefore quenched within 30 ns, leaving delayed fluorescence (DF) observable from 30 ns onward as the measured reverse intersystem crossing (rISC) rate is >1 × 10(6) s(–1), yielding a DF/PF ratio >98%. Time-resolved emission spectra measured between 30 ns and 900 ms in films show no change in the spectral band shape, but between 50 and 400 ms, we observe a ca. 65 meV red shift of the emission, ascribed to the DF to phosphorescence transition, with the phosphorescence (lifetime >1 s) emanating from the lowest (3)CT state. A host-independent thermal activation energy of 16 meV is found, indicating that small-amplitude vibrational motions (∼140 cm(–1)) of the donor with respect to the acceptor dominate rISC. TpAT-tFFO photophysics is dynamic, and these vibrational motions drive the molecule between maximal rISC rate and high radiative decay configurations so that the molecule can be thought to be “self-optimizing” for the best TADF performance. American Chemical Society 2023-04-27 /pmc/articles/PMC10184167/ /pubmed/37197385 http://dx.doi.org/10.1021/acs.jpcc.2c07529 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Miranda-Salinas, Hector
Rodriguez-Serrano, Angela
Kaminski, Jeremy M.
Dinkelbach, Fabian
Hiromichi, Nakagawa
Kusakabe, Yu
Kaji, Hironori
Marian, Christel M.
Monkman, Andrew P.
Conformational, Host, and Vibrational Effects Giving Rise to Dynamic TADF Behavior in the Through-Space Charge Transfer, Triptycene Bridged Acridine-Triazine Donor Acceptor TADF Molecule TpAT-tFFO
title Conformational, Host, and Vibrational Effects Giving Rise to Dynamic TADF Behavior in the Through-Space Charge Transfer, Triptycene Bridged Acridine-Triazine Donor Acceptor TADF Molecule TpAT-tFFO
title_full Conformational, Host, and Vibrational Effects Giving Rise to Dynamic TADF Behavior in the Through-Space Charge Transfer, Triptycene Bridged Acridine-Triazine Donor Acceptor TADF Molecule TpAT-tFFO
title_fullStr Conformational, Host, and Vibrational Effects Giving Rise to Dynamic TADF Behavior in the Through-Space Charge Transfer, Triptycene Bridged Acridine-Triazine Donor Acceptor TADF Molecule TpAT-tFFO
title_full_unstemmed Conformational, Host, and Vibrational Effects Giving Rise to Dynamic TADF Behavior in the Through-Space Charge Transfer, Triptycene Bridged Acridine-Triazine Donor Acceptor TADF Molecule TpAT-tFFO
title_short Conformational, Host, and Vibrational Effects Giving Rise to Dynamic TADF Behavior in the Through-Space Charge Transfer, Triptycene Bridged Acridine-Triazine Donor Acceptor TADF Molecule TpAT-tFFO
title_sort conformational, host, and vibrational effects giving rise to dynamic tadf behavior in the through-space charge transfer, triptycene bridged acridine-triazine donor acceptor tadf molecule tpat-tffo
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10184167/
https://www.ncbi.nlm.nih.gov/pubmed/37197385
http://dx.doi.org/10.1021/acs.jpcc.2c07529
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