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Long organic persistent luminescence triggered by photo-induced charge-separation for water-resistant information encryption

  • Wenying Shi
  • , Liping Guan
  • , Yuntao He*
  • , Xinrui Wang
  • , Jing Liu
  • , Xianggui Kong
  • *Corresponding author for this work
  • Beijing University of Chemical Technology
  • Beijing Technology and Business University

Research output: Contribution to journalArticlepeer-review

Abstract

The long persistent luminescence (LPL) phenomenon in the water environment presents us with a broad blueprint to struggle for a new generation of optical materials. However, the realization of water-resistant LPL remains a formidable challenge due to severe quenching of triplet excitons inflowing media. Here, an electron donor–acceptor system is designed based on a B2O3 host and carbon dot (CD) guest, which exhibits deep-blue LPL with a lasting time of about 21 s to the naked eye. The average LPL lifetime is over 2 s, and the LPL quantum yield is 10.78%. This host–guest system possesses charge-separated states and charge-transferred states triggered by an optical source, which is the foundation for LPL. Importantly, in water environments (HCl, NaOH, electrolyte NaCl, and H2O), the LPL of as-obtained CDs@B2O3 can still remain due to high environmental stability of B2O3. Based on the excellent LPL with ultra-long lifetime and water-resistant feature, the CDs@B2O3 successfully applies in water-resistant information encryption.

Original languageEnglish
Pages (from-to)6065-6068
Number of pages4
JournalOptics Letters
Volume49
Issue number21
DOIs
StatePublished - 1 Nov 2024

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