Tailoring Dynamic Charge Response and Trap-State Landscapes with Targeted Phosphine Oxide Additive for Efficient FAPbBr3 Quantum-Dot Light-Emitting Diodes

Abstract Formamidinium lead bromide (FAPbBr3) perovskite quantum dots (PeQDs) are promising emitters for next-generation displays owing to their narrow emission, high color purity, and solution processability. However, surface-derived trap states promote nonradiative recombination and charge accumulation, limiting PeQLED performance. Here, 9,10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide is introduced during PeQD synthesis to regulate surface coordination. Spectroscopy supports coordination of its electron-rich P═O group with undercoordinated Pb2+ sites, thereby suppressing trap-assisted nonradiative recombination. Reduced Urbach energy and comparative space-charge-limited-current trap-density estimates support lower energetic disorder, while frequency-resolved electrical measurements indicate diminished slow charge relaxation and trap-mediated charge accumulation. Consequently, the optimized PeQLED achieves a peak external quantum efficiency of 18.3%, a maximum luminance of 75,180 cd m–2, and a current efficiency of 85.4 cd A–1. These results link molecular surface coordination with nonradiative-loss suppression and dynamic charge regulation, providing a strategy for efficient PeQLEDs.

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Publication Details

Journal
The Journal of Physical Chemistry Letters
Published
2026-09-18
DOI
https://doi.org/10.1021/acs.jpclett.6c02527
Primary Topic
Perovskite Materials and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

Tailoring Dynamic Charge Response and Trap-State Landscapes with Targeted Phosphine Oxide Additive for Efficient FAPbBr3 Quantum-Dot Light-Emitting Diodes

Weiqing Yang, Xiankan Zeng, Yujie Wen, Maolin Mu et al.
The Journal of Physical Chemistry Letters
Perovskite Materials and Applications
article

Tailoring Dynamic Charge Response and Trap-State Landscapes with Targeted Phosphine Oxide Additive for Efficient FAPbBr3 Quantum-Dot Light-Emitting Diodes

Weiqing Yang, Xiankan Zeng, Yujie Wen, Maolin Mu, Wen Li, Chenglong Li, Jianhao Ding, Di Shen, Xinning Wang
article en

Abstract

Abstract Formamidinium lead bromide (FAPbBr3) perovskite quantum dots (PeQDs) are promising emitters for next-generation displays owing to their narrow emission, high color purity, and solution processability. However, surface-derived trap states promote nonradiative recombination and charge accumulation, limiting PeQLED performance. Here, 9,10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide is introduced during PeQD synthesis to regulate surface coordination. Spectroscopy supports coordination of its electron-rich P═O group with undercoordinated Pb2+ sites, thereby suppressing trap-assisted nonradiative recombination. Reduced Urbach energy and comparative space-charge-limited-current trap-density estimates support lower energetic disorder, while frequency-resolved electrical measurements indicate diminished slow charge relaxation and trap-mediated charge accumulation. Consequently, the optimized PeQLED achieves a peak external quantum efficiency of 18.3%, a maximum luminance of 75,180 cd m–2, and a current efficiency of 85.4 cd A–1. These results link molecular surface coordination with nonradiative-loss suppression and dynamic charge regulation, providing a strategy for efficient PeQLEDs.

The Journal of Physical Chemistry Letters
Southwest Jiaotong University (CN)
National Natural Science Foundation of China, National Key Research and Development Program of China
Affordable and clean energy
Openalex Percentile: Top 20%
Perovskite Materials and Applications
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Tailoring Dynamic Charge Response and Trap-State Landscapes with Targeted Phosphine Oxide Additive for Efficient FAPbBr3 Quantum-Dot Light-Emitting Diodes — Weiqing Yang, Xiankan Zeng, et al. · The Journal of Physical Chemistry Letters (2026) | TGRS Research Map | TGRS