A chiral spirofluorene-embedded multiple-resonance thermally activated delayed fluorescence emitter for efficient pure-green circularly polarized electroluminescence

Xu-Feng Luo , Shi-Quan Song , Xueying Wu , Ching-Fai Yip , Songliang Cai , You-Xuan Zheng

Aggregate ›› 2024, Vol. 5 ›› Issue (2) : 445

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Aggregate ›› 2024, Vol. 5 ›› Issue (2) :445 DOI: 10.1002/agt2.445
RESEARCH ARTICLE

A chiral spirofluorene-embedded multiple-resonance thermally activated delayed fluorescence emitter for efficient pure-green circularly polarized electroluminescence

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Abstract

The simultaneous achievement of chiral multiple-resonance thermally activated delayed fluorescence (MR-TADF) emitters with narrowband and circularly polarized electroluminescence (CPEL) poses a challenge. Herein, a MR-TADF emitter, Spiro-BNCz, embedding spirofluorene structure was developed and chiral separated, whose emission peaks at 528 nm in toluene with Commission Internationale de L’Eclairage coordinates of (0.26, 0.69). The conjugation extension caused by embedding sulfur substituted spirofluorene on B/N framework shortens the singlettriplet energy gap and increases spin-orbital coupling matrix element. Therefore, a fast reverse intersystem crossing rate constant of 2.8 × 106 s−1 and a high photoluminescence efficiency of 92% in film were achieved. The organic light-emitting diode (OLED) exhibits a maximum external quantum efficiency of 32.3%. Particularly, the circularly polarized OLEDs based on Spiro-BNCz enantiomers show symmetric CPEL with dissymmetry factors (|gEL|) ≈ 10−3.

Keywords

circularly polarized electroluminescence / CP-MR-TADF emitter / organic light-emitting diode / pure green / sulfur substituted spirofluorene

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Xu-Feng Luo, Shi-Quan Song, Xueying Wu, Ching-Fai Yip, Songliang Cai, You-Xuan Zheng. A chiral spirofluorene-embedded multiple-resonance thermally activated delayed fluorescence emitter for efficient pure-green circularly polarized electroluminescence. Aggregate, 2024, 5(2): 445 DOI:10.1002/agt2.445

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2023 The Authors. Aggregate published by South China University of Technology; AIE Institute and John Wiley & Sons Australia, Ltd.

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