跳到主要导航 跳到搜索 跳到主要内容

Coordination Rigidity Lock: An Effective Strategy for Ultralong-Lived Aqueous Room-Temperature Phosphorescence

  • Da Jun Wu
  • , Yichen Shi
  • , Li Ya Liang
  • , Ya Ting Gao
  • , Da Wei Li*
  • , Bin Bin Chen*
  • *此作品的通讯作者
  • East China University of Science and Technology
  • Shanghai World Foreign Language Academy

科研成果: 期刊稿件文章同行评审

摘要

The design of ultralong-lived aqueous room-temperature phosphorescence (RTP) materials has emerged as a rapidly advancing yet challenging research field. In this work, we introduce a coordination rigidity locking strategy to achieve an ultralong aqueous RTP lifetime in lanthanum- and poly(pyromeric acid)-based phosphorescent materials (La/PMA-PMs). Compared to their dry state (212 ms), the La/PMA-PMs display a significantly increased lifetime of 974 ms upon the addition of a small amount of water (50 wt %). Notably, even in a fully nondeoxygenated aqueous environment (≥300 wt % water), La/PMA-PMs retain an ultralong aqueous RTP lifetime of approximately 800 ms. The water-enhanced RTP can be ascribed to the abundant La3+sites and hydrophilic groups on the La/PMA-PMs surface. Specifically, water molecules coordinate with La3+ions while also serving as bridging agents that bind to hydrophilic groups via hydrogen bonding. This interaction rigidifies the functional groups and restricts their molecular motions, thereby minimizing nonradiative decay. This work not only presents a robust coordination rigidity strategy for designing high-performance aqueous RTP materials but also highlights their potential as optical platforms for advanced anticounterfeiting applications.

源语言英语
页(从-至)1828-1834
页数7
期刊ACS Applied Optical Materials
3
8
DOI
出版状态已出版 - 22 8月 2025
已对外发布

指纹

探究 'Coordination Rigidity Lock: An Effective Strategy for Ultralong-Lived Aqueous Room-Temperature Phosphorescence' 的科研主题。它们共同构成独一无二的指纹。

引用此