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Color tuning of multi-resonant thermally activated delayed fluorescence emitters based on fully fused polycyclic amine/carbonyl frameworks
Organic Semiconductor Centre, EaStCHEM School of Chemistry, University of St Andrews, St Andrews, United Kingdom.
Center for Organic Photonics and Electronics Research (OPERA), Kyushu University, Motooka 744, Fukuoka, Nishi-ku, Japan.
Umeå University, Faculty of Science and Technology, Department of Physics.ORCID iD: 0000-0003-1274-5918
Organic Semiconductor Centre, EaStCHEM School of Chemistry, University of St Andrews, St Andrews, United Kingdom; Laboratory for Computational Modeling of Functional Materials, Namur Institute of Structured Matter, University of Namur, 61 Rue de Bruxelles, Namur, Belgium.
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2023 (English)In: Journal of Materials Chemistry C, ISSN 2050-7526, E-ISSN 2050-7534, Vol. 11, no 24, p. 8263-8273Article in journal (Refereed) Published
Abstract [en]

Two novel π-extended amine/carbonyl-based multi-resonance thermally activated delayed fluorescence (MR-TADF) emitters have been designed and synthesized. The two emitters are isomeric, composed of nine fused rings and show green-yellow emission. Sym-DiDiKTa and Asym-DiDiKTa possess tert-butyl groups distributed in a symmetrical and asymmetrical fashion, respectively, which significantly impact the single-crystal packing structure. The two compounds possess similar singlet-triplet energy gaps, ΔEST, of around 0.23 eV, narrowband emission characterized by a full-width at half-maximum, FWHM, of 29 nm and a photoluminescence quantum yield, ΦPL, of 70% and 53% for the symmetric and asymmetric counterparts, respectively, in toluene. Investigation in OLEDs demonstrated that the devices with Sym-DiDiKTa and Asym-DiDiKTa displayed electroluminescence maxima of 543 and 544 nm, and maximum external quantum efficiencies (EQEmax) of 9.8% and 10.5%, respectively. The maximum EQE was further improved to 19.9% by employing a hyperfluorescence strategy. We further present the first example of a neutral MR-TADF emitter incorporated in a LEC device where Sym-DiDiKTa acts as the emitter. The LEC shows a λEL at 551 nm and FWHM of 60 nm with luminance of 300 cd m−2 and a fast turn-on time of less than 2 s to 100 cd m−2

Place, publisher, year, edition, pages
Royal Society of Chemistry, 2023. Vol. 11, no 24, p. 8263-8273
National Category
Materials Chemistry
Identifiers
URN: urn:nbn:se:umu:diva-209301DOI: 10.1039/d3tc00641gISI: 000986659900001Scopus ID: 2-s2.0-85159346152OAI: oai:DiVA.org:umu-209301DiVA, id: diva2:1764036
Funder
Swedish Research CouncilSwedish Energy AgencyBertil & Britt Svenssons Stiftelse för BelysningsteknikAvailable from: 2023-06-08 Created: 2023-06-08 Last updated: 2023-09-20Bibliographically approved

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Tang, ShiEdman, Ludvig

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