2025/11/14 by Janine Haug, Sen Wu, Hassan Hafeez +9 · 1 voice
Engineering · Materials Science · #Luminescence and Fluorescent Materials #Organic Light-Emitting Diodes Research #Perovskite Materials and Applications
paper · pdf · doi:10.1002/adom.202502118
openalex created_date 2025/11/14 · openalex publication_date 2025/11/14 · openalex updated_date 2026/08/01
Abstract The impact of the decoration of the multiresonant thermally activated delayed fluorescence (MR‐TADF) core DiKTa with 9,9′‐spirobifluorene (SBF) groups is investigated with respect to the impact of number, position, and incorporation‐type of the SBF unit on the photophysical and optoelectronic properties. This approach allows for the development of narrowband, high‐efficiency organic light emitting diodes (OLEDs) with moderate efficiency roll‐off. The MR‐TADF emitters DiKTaSBF , 3‐SBF‐DiKTa , 7‐SBF‐DiKTa , and 7‐SBF‐DiKTaSBF , differ in the number, position, and incorporation‐type of the SBF unit. Sky‐blue OLEDs with DiKTaSBF and 3‐SBF‐DiKTa show superior performance with maximal external quantum efficiencies (EQE max ) of 26.1 and 27.0%, respectively, while all four families of OLEDs show a moderate efficiency roll‐off. Narrowband emissions with full‐width at half maximum (FWHM) of 32 and 35 nm are observed for 7‐modified emitters, whereas for the devices with emitters containing SBF groups at the 3‐position show a broadened emission, with FWHM of ≈50 nm. These findings highlight the effect of the regiochemistry of the SBF group on the optoelectronic properties and the corresponding impact on the performance of the OLEDs.