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Updated: Sep 26, 2026

Development of Efficient OLEDs from Solution Deposition
Published on: November 4, 2022
para-Boron Dendritic Modulation of MR-TADF Emitters Enables High-Efficiency Narrowband Solution-Processed OLEDs
Tao Zhou1, Guimin Zhao1, Wenwen Tian1
1Jiangsu Key Laboratory for Science and Applications of Molecular Ferroelectrics, Jiangsu Engineering Laboratory of Smart Carbon-Rich Materials and Device, School of Chemistry and Chemical Engineering, Southeast University, Nanjing211189, P. R. China.
Abstract:
The rigid planar structure of multi-resonance thermally activated delayed fluorescence (MR-TADF) emitters delivers narrowband emission with high color purity but also induces spectral broadening and poor solution processability, hindering their application in solution-processed OLEDs. Herein, we develop a dendritic functionalization strategy at the para-position of boron in the classical MR-TADF emitter BCz-BN by tuning the electron-withdrawing characteristics of peripheral dendrons, affording two solution-processable emitters, CN-BN and Ph-BN. The cyano-containing CN-BN exhibits accelerated reverse intersystem crossing but broadened emission due to the presence of strong charge-transfer character. By removing the cyano group, Ph-BN preserves the intrinsic MR character with reduced excited-state relaxation. Combined with the steric protection of the dendritic units, Ph-BN achieves a narrow full width at half maximum (fwhm) of 28 nm and a high EQEmax of 24.9% in solution-processed OLEDs. Notably, the fwhm of Ph-BN increases by only 5 nm from photoluminescence to electroluminescence, whereas BCz-BN exhibits a much larger increase of 16 nm.

