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March 21, 2026Angewandte Chemie International Edition2 citations

Pseudo‐Homologue Doping Strategy for Afterglow Materials

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JWJiayu WangLMLiangwei MaBDBingbing Ding

Key Points

  • This research aims to explore the effects of trace impurities on afterglow in organic phosphorescent materials and propose a new doping strategy.
  • Investigated the afterglow properties of benzene-carboxylic acid derivatives
  • Identified trace impurities as biphenyl carboxylic acids
  • Developed a pseudo-homologues doping strategy based on structural similarities
  • Prepared 275 doped samples to assess afterglow performance
  • Achieved a 73.3% success rate for afterglow in pseudo-homologue doped samples
  • Compared to only 6.5% success rate in non-pseudo-homologue samples
  • Identified specific impurities that contribute to detectable phosphorescence at low concentrations (0.1 ppm)

Abstract

Impurities in organic phosphorescent materials have caused extensive discussions in recent years. In this work, we demonstrate the impressive afterglow of commercial benzene-carboxylic acid (BCA) derivatives are attributed to trace impurities identified as biphenyl carboxylic acid derivatives. One of the impurities even induces detectable phosphorescence when the doping ratio is as low as 0.1 ppm (molar ratio). Inspired by the structural similarity between impurities and the main component, we propose a pseudo-homologues strategy for constructing afterglow materials. Based on this model, several groups of compounds are used to prepare 275 doped samples. Surprisingly, pseudo-homologues exhibit a markedly higher success rate for afterglow (73.3%) compared to that of other samples (6.5%). This structural model offers new perspectives for the construction of dual-component afterglow materials.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69be386a6e48c4981c678c23https://doi.org/10.1002/anie.5554671
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