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Delayed Fluorescence and Room Temperature Phosphorescence from a Liquid Arene.

Sérgio Dos Santos, Gustavo; Aparecido de Oliveira, Wilson; da Silva Kutz, Monike; Gomes Franca, Larissa; Farias, Giliandro; Monkman, Andrew P; Bock, Harald; Bechtold, Ivan H; Westphal, Eduard

Authors

Gustavo Sérgio Dos Santos

Wilson Aparecido de Oliveira

Monike da Silva Kutz

Giliandro Farias

Harald Bock

Ivan H Bechtold

Eduard Westphal



Abstract

Delayed emission (DF) of fluorescence is generally observed either in solution or in the crystalline state. In the latter, well-defined intermolecular interactions may play a significant role in defining the emission characteristics. Here, we present a trialkoxy-homotruxene that is liquid at room temperature and compare its emission behavior with that of a crystalline analog containing the same π-electron system. The DF observed is due to triplet-triplet annihilation (TTA) and persists at low temperatures (90 K). Accompanied by slightly shorter phosphorescence and DF lifetimes, the singlet-triplet energy gap increased by 4 % compared to the crystalline homolog. The replacement of methyl groups with racemic branched alkoxy chains in homotruxene derivatives proves efficient in suppressing crystallization without significantly altering DF. In neat films, the compound exhibited TTA-DF at room temperature, phosphorescence lasting up to 50 ms and Photoluminescence Quantum Yield (PLQY) of 24 %. Thus, TTA-DF persists in a single-component isotropic liquid phase, showing both molecular and aggregate emissions, only slightly affected by the absence of periodic molecular stacking.

Citation

Sérgio Dos Santos, G., Aparecido de Oliveira, W., da Silva Kutz, M., Gomes Franca, L., Farias, G., Monkman, A. P., Bock, H., Bechtold, I. H., & Westphal, E. (online). Delayed Fluorescence and Room Temperature Phosphorescence from a Liquid Arene. Chemistry: A European Journal, Article e202404698. https://doi.org/10.1002/chem.202404698

Journal Article Type Article
Acceptance Date Feb 14, 2025
Online Publication Date Feb 14, 2025
Deposit Date Mar 24, 2025
Journal Chemistry: A European Journal
Print ISSN 0947-6539
Electronic ISSN 1521-3765
Peer Reviewed Peer Reviewed
Article Number e202404698
DOI https://doi.org/10.1002/chem.202404698
Keywords Triplet-triplet annihilation, Luminescence, Delayed fluorescence, Room-temperature phosphorescence, Homotruxene
Public URL https://durham-repository.worktribe.com/output/3552943