Dokument: How Donor–Bridge–Acceptor Orientation and Chemical Modification Affect the Thermally Activated Delayed Fluorescence Abilities of Boron‐Based Emitters

Titel:How Donor–Bridge–Acceptor Orientation and Chemical Modification Affect the Thermally Activated Delayed Fluorescence Abilities of Boron‐Based Emitters
URL für Lesezeichen:https://docserv.uni-duesseldorf.de/servlets/DocumentServlet?id=70724
URN (NBN):urn:nbn:de:hbz:061-20250911-104847-0
Kollektion:Publikationen
Sprache:Englisch
Dokumententyp:Wissenschaftliche Texte » Artikel, Aufsatz
Medientyp:Text
Autoren: Kaminski, Jeremy M. [Autor]
Chu, Tu Viet [Autor]
Marian, Christel [Autor]
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Dateien vom 11.09.2025 / geändert 11.09.2025
Beschreibung:The photophysical properties of a series of thermally activated delayed fluorescence emitters, comprising a nitrogen-based donor, a phenylene bridge and a boron-based acceptor, are investigated using a combination of density functional theory and multi-reference configuration interaction methods. In addition to singlet and triplet charge-transfer (CT) states, an acceptor-localized low-lying triplet state is found in all compounds. The size of the singlet–triplet gap and the energetic order of the CT and locally excited (LE) states can be modulated by regioisomerism (ortho- or para-linkage) and the chemical modification of the subunits. Spin-vibronic interactions, introduced through a Herzberg–Teller-type approach, are found to accelerate the intersystem crossing process considerably provided that the CT and LE states are close in energy.
Rechtliche Vermerke:Originalveröffentlichung:
Kaminski, J., Chu, T. V., & Marian, C. (2025). How Donor–Bridge–Acceptor Orientation and Chemical Modification Affect the Thermally Activated Delayed Fluorescence Abilities of Boron‐Based Emitters. ChemPhotoChem, 9(8), Article e202500033. https://doi.org/10.1002/cptc.202500033
Lizenz:Creative Commons Lizenzvertrag
Dieses Werk ist lizenziert unter einer Creative Commons Namensnennung 4.0 International Lizenz
Fachbereich / Einrichtung:Mathematisch- Naturwissenschaftliche Fakultät
Dokument erstellt am:11.09.2025
Dateien geändert am:11.09.2025
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