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August 9, 20251 citations

Achieve Phosphorescence Activation Through the Modulation of Intermolecular Forces within the Matrix.

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GYGuohui YangPHPinyi HeJBJianliang Bai

Key Points

  • Phosphorescence is activated in carbon dots by adjusting intermolecular forces in the matrix.
  • A quantum yield of 8.79% demonstrates the efficiency of the phosphorescent carbon dots in applications.
  • The study utilized silica to optimize matrix-driven interactions crucial for phosphorescence activation.
  • Findings provide a new approach for designing high-performance phosphorescent materials in various technologies.

Abstract

Carbon dots (CDs)-based phosphorescent materials have attracted significant attention due to their widespread applications in anti-counterfeiting technologies, bioimaging, optoelectronic devices, and other fields. However, synthesizing high-efficiency phosphorescent CDs materials and elucidating their emission mechanisms remain critical challenges. In this study, phosphorescence in CDs is successfully activated by modulating intermolecular forces within the crystalline matrix. Experimental results demonstrate that precise spatial matching between matrix vacancies and guest carbon dots, achieved through silica introduction to regulate matrix-driven interactions, is critical for this phenomenon. Notably, a phosphorescence quantum yield as high as 8.79% is achieved. This work provides mechanistic insights into phosphorescence generation in crystalline carbon dots and establishes a novel strategy for designing high-performance phosphorescent carbon dot materials.

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Cite This Study

Yang et al. (2025) studied this question.

synapsesocial.com/papers/689dfe97d61984b91e13bef2https://doi.org/10.1002/smll.202507504
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