4.7 Article

Designing multi-mode optical thermometers via the thermochromic LaNbO4:Bi3+/Ln3+ (Ln = Eu, Tb, Dy, Sm) phosphors

期刊

CHEMICAL ENGINEERING JOURNAL
卷 415, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2021.128977

关键词

Bi3+ ions; Rare-earth; Energy transfer; Thermometer; Phosphors

资金

  1. Basic Science Research Program through the National Research Foundation of Korea (NRF) - Ministry of Science, ICT and Future Planning [2018R1A2B6005179]
  2. Natural Science Foundation of Zhejiang Province [LQ20F050004]
  3. K.C. Wong Magna Fund in Ningbo University [xkzw1507]
  4. National Research Foundation of Korea [4299990113858] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

The article discusses the preparation of LaNbO4:1.0%Bi3+/x%Ln(3+) (Ln = Eu, Tb, Dy, Sm) phosphors by solid-state reaction technology, which can emit both Bi3+ and Ln(3+) ions emissions, resulting in multi-color emissions. By taking advantage of the different thermal quenching properties between Bi3+ and Ln(3+) ions, the optical thermometric characteristics of the compounds were evaluated.
LaNbO4:1.0%Bi3+/x%Ln(3+) (Ln = Eu, Tb, Dy, Sm) phosphors, which can emit both emissions of Bi3+ and Ln(3+) ions, were prepared by a solid-state reaction technology. At 306 nm excitation, the prepared phosphors present multi-color emissions due to the energy transfer from Bi3+ to Ln(3+) ions. Taking advantage of the various thermal quenching properties between Bi3+ and Ln(3+) ions, the optical thermometric characteristics of the resultant compounds were evaluated. The maximum S-a values of the prepared phosphors with the dopants of Bi3+/Eu3+, Bi3+/Tb3+, Bi3+/Dy3+ and Bi3+/Sm3+ are 0.044 K-1, 0.041 K-1, 0.008 K-1 and 0.031 K-1, respectively, while their maximum Sr values are 1.89% K-1, 2.36% K-1, 1.26% K-1 and 1.36% K-1, respectively. Moreover, based on the thermochromic behaviors of the studied samples, their temperature sensing abilities are also explored. Furthermore, through monitoring the temperature-dependent decay time of Bi3+ ions, the maximum relative temperature sensitivity values of the designed phosphors with the dopants of Bi3+/Eu3+, Bi3+/Tb3+, Bi3+/Dy3+ and Bi3+/Sm3+ are 0.10%, 0.032%, 0.037% and 0.145% K 1, respectively. Additionally, the thermometric properties of the compounds can be facilely manipulated by adopting diverse sensing technology. These results indicate that LaNbO4:1.0%Bi3+/x%Ln(3+) (Ln = Eu, Tb, Dy, Sm) phosphors are promising multi-mode optical thermometers.

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