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Computationally Guided Molecular Design to Minimize the LE/CT Gap in D-π-A Fluorinated Triarylboranes for Efficient TADF via D and π-Bridge Tuning.


ABSTRACT: In this combined experimental and theoretical study, a computational protocol is reported to predict the excited states in D-π-A compounds containing the B(FXyl)2 (FXyl = 2,6-bis(trifluoromethyl)phenyl) acceptor group for the design of new thermally activated delayed fluorescence (TADF) emitters. To this end, the effect of different donor and π-bridge moieties on the energy gaps between local and charge-transfer singlet and triplet states is examined. To prove this computationally aided design concept, the D-π-B(FXyl)2 compounds 1-5 were synthesized and fully characterized. The photophysical properties of these compounds in various solvents, polymeric film, and in a frozen matrix were investigated in detail and show excellent agreement with the computationally obtained data. Furthermore, a simple structure-property relationship is presented on the basis of the molecular fragment orbitals of the donor and the π-bridge, which minimize the relevant singlet-triplet gaps to achieve efficient TADF emitters.

SUBMITTER: Narsaria AK 

PROVIDER: S-EPMC7405949 | biostudies-literature | 2020 Aug

REPOSITORIES: biostudies-literature

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Computationally Guided Molecular Design to Minimize the LE/CT Gap in D-π-A Fluorinated Triarylboranes for Efficient TADF via D and π-Bridge Tuning.

Narsaria Ayush K AK   Rauch Florian F   Krebs Johannes J   Endres Peter P   Friedrich Alexandra A   Krummenacher Ivo I   Braunschweig Holger H   Finze Maik M   Nitsch Jörn J   Bickelhaupt F Matthias FM   Marder Todd B TB  

Advanced functional materials 20200602 31


In this combined experimental and theoretical study, a computational protocol is reported to predict the excited states in D-π-A compounds containing the B(<sup>F</sup>Xyl)<sub>2</sub> (<sup>F</sup>Xyl = 2,6-bis(trifluoromethyl)phenyl) acceptor group for the design of new thermally activated delayed fluorescence (TADF) emitters. To this end, the effect of different donor and π-bridge moieties on the energy gaps between local and charge-transfer singlet and triplet states is examined. To prove th  ...[more]

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