Literature DB >> 33625432

Gd3+-activated narrowband ultraviolet-B persistent luminescence through persistent energy transfer.

Xianli Wang1, Yafei Chen2, Peter A Kner1, Zhengwei Pan2.   

Abstract

This work reports the realization of Gd3+ persistent luminescence in the narrowband ultraviolet-B (NB-UVB; 310-313 nm) through persistent energy transfer from a sensitizer of Pr3+, Pb2+ or Bi3+. We propose a general design concept to develop Gd3+-activated NB-UVB persistent phosphors from Pr3+-, Pb2+- or Bi3+-activated ultraviolet-C (200-280 nm) or ultraviolet-B (280-315 nm) persistent phosphors, leading to the discovery of ten Gd3+ NB-UVB persistent phosphors such as Sr3Gd2Si6O18:Pr3+, Sr3Gd2Si6O18:Pb2+ and Y2GdAl2Ga3O12:Bi3+ as well as five ultraviolet-B persistent phosphors such as Y3Al2Ga3O12:Pr3+, Sr3Y2Si6O18:Pb2+ and Y3Al2Ga3O12:Bi3+. The persistent energy transfer from the sensitizers to Gd3+ is very efficient and the Gd3+ NB-UVB afterglow can last for more than 10 hours. This study expands the persistent luminescence research to the NB-UVB as well as the broader ultraviolet-B spectral regions. The NB-UVB persistent phosphors may act as self-sustained glowing NB-UVB radiation sources for dermatological therapy.

Entities:  

Year:  2021        PMID: 33625432     DOI: 10.1039/d1dt00120e

Source DB:  PubMed          Journal:  Dalton Trans        ISSN: 1477-9226            Impact factor:   4.390


  1 in total

1.  Mechanism of the trivalent lanthanides' persistent luminescence in wide bandgap materials.

Authors:  Leipeng Li; Tianyi Li; Yue Hu; Chongyang Cai; Yunqian Li; Xuefeng Zhang; Baolai Liang; Yanmin Yang; Jianrong Qiu
Journal:  Light Sci Appl       Date:  2022-03-08       Impact factor: 17.782

  1 in total

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