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February 8, 2026Applied Physics Letters0 citations

Benzoic acid mediating ligand exchange of CsPbBr3 nanoplates for high performance blue perovskite LED

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RLRuoyan LiuTLTongge LiYHYang Han

Key Points

  • The study aims to improve the performance of CsPbBr3-based blue perovskite LEDs by utilizing benzoic acid for ligand exchange.
  • Synthesis of CsPbBr3 nanoplates using benzoic acid to mediate ligand exchange.
  • Protonation and removal of excess long-chain ligands with benzoic acid.
  • In situ ligand exchange with dimethyl didodecylammonium bromide.
  • Measurement of photoluminescence quantum yield and stability in prepared nanoplates.
  • Photoluminescence quantum yield increased from 23% to 78% after ligand exchange.
  • CsPbBr3 NPLs exhibit efficient pure blue electroluminescence at 468 nm.
  • External quantum efficiency achieved of 1.10% with improved spectral stability.

Abstract

The performance of CsPbBr3-based blue perovskite light-emitting diodes (PeLEDs) is compromised due to the intrinsic properties of essential ligands, which hinder their application in full-color displays and lighting. In this study, CsPbBr3 nanoplates (NPLs) with high efficiency and exceptional stability have been synthesized by benzoic acid (BA) mediating ligand exchange. This innovative method employs BA to promote protonation and eliminate excess long-chain ligands. Subsequent in situ ligand exchange with dimethyl didodecylammonium bromide substituting for the long-chain ligands results in a notable enhancement of photoluminescence quantum yield (from 23% to 78%) and stability. As a result, CsPbBr3 NPLs based PeLEDs exhibit efficient pure blue electroluminescence with an external quantum efficiency of 1.10% at 468 nm, an International Commission on Illumination coordinate of (0.128, 0.099), and enhanced spectral stability.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/6988278b0fc35cd7a88465bbhttps://doi.org/10.1063/5.0313517
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