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March 29, 2026Angewandte Chemie International Edition2 citations

Novel Robust Folded Thermally Activated Delayed Fluorescence Molecules for High‐Performance OLEDs

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XLXia LanXGXiaoyang GuanJZJiajie Zeng

Key Points

  • This research aims to explore the efficiency of novel folded TADF molecules for OLED applications and their role as sensitizers.
  • Synthesis of two folded TADF molecules, f-TRZ-1 and f-TRZ-2.
  • Evaluated electroluminescence efficiencies and thermal stability.
  • Fabricated OLEDs using f-TRZ-1 and f-TRZ-2 as emitters.
  • Assessed performance as sensitizers for MR‐TADF emitter tCzphB‐Fl.
  • Achieved maximum external quantum efficiencies of up to 28.9% with f-TRZ-1 and f-TRZ-2.
  • Enhanced EL performance with OLEDs using f-TRZ-1 and f-TRZ-2 as sensitizers, reaching up to 37.8% efficiency.
  • Noted reduced efficiency roll-offs in hyperfluorescence OLEDs.

Abstract

ABSTRACT Folded thermally activated delayed fluorescence (TADF) molecules based on through‐space charge transfer (TSCT) have aroused increasing interest, but the electroluminescence (EL) efficiencies of most folded TADF molecules are still inferior, and their application as sensitizers for multi‐resonance TADF (MR‐TADF) emitters remains barely explored. Herein, two novel isomeric folded TADF molecules, f‐ TRZ‐1 and f‐ TRZ‐2, are constructed by using 2,4,6‐triphenyl‐1,3,5‐triazine (TRZ) as acceptor, 9‐phenylcarbazole (PC) as donor, and 11,12‐dihydroindolo2,3‐acarbazole (HIC) as bridge. They exhibit regular intramolecular packing structures with effective TSCT and enjoy ultrahigh thermal stability and balanced bipolar charge transport. Moreover, efficient organic light‐emitting diodes (OLEDs) are fabricated using f‐ TRZ‐1 and f‐ TRZ‐2 as emitters, achieving maximum external quantum efficiencies ( η ext,max ) of up to 28.9%. f‐ TRZ‐1 and f‐ TRZ‐2 can perform as efficient sensitizers for the green MR‐TADF emitter tCzphB‐Fl, and the prepared hyperfluorescence OLEDs exhibit outstanding EL performances, with improved η ext,max s of up to 37.8% and reduced efficiency roll‐offs. This work demonstrates the promising potential of these folded TADF molecules as emitters and sensitizers for the fabrication of high‐performance OLEDs.

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Cite This Study

Lan et al. (2026) studied this question.

synapsesocial.com/papers/69c8c1f4de0f0f753b39c321https://doi.org/10.1002/anie.8748107
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