4.7 Article

Enhanced photoluminescence and ultrahigh temperature sensitivity from NaF flux assisted CaTiO3: Pr3+ red emitting phosphor

期刊

JOURNAL OF ALLOYS AND COMPOUNDS
卷 784, 期 -, 页码 628-640

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2019.01.087

关键词

Calcium titanate; Praseodymium; Optical thermometry; Intervalence charge transfer state

资金

  1. Natural Science Foundation of Hunan Province, China [2018JJ3251, 2018JJ3252, 2016JJ4044]
  2. Scientific Research Fund of Hunan Provincial Education Department, China [17B138, 16B136]
  3. National Natural Science Foundation of China [21571059, 51602101, 51704116]
  4. Open Foundation of Hunan Provincial Key Laboratory of Fine Ceramics and Powder Materials, China [TC201701, TC201704]
  5. Double First-Class Discipline Construction Program of Hunan Province [Xiang Jiao Tong [2018]469]
  6. Planned Science and Technology Project of Hunan Province, China [2016TP1028]

向作者/读者索取更多资源

The Pr3+ doped CaTiO3 red emitting phosphor with enhanced PL and ultrahigh temperature sensing was prepared via NaF flux assisted solid-state reaction. All samples had the orthorhombic perovskite phase and no impurity was found. The typical sample mainly had sphere-like morphology with particle size of similar to 670 nm. The optical bandgap values were similar to 3.62-3.63eV. The Pr3+ quenching content was 0.6 mol% and the ET mechanism for quenching was the d-d interaction with the critical distance of 26.09 A over dot. A certain amount of NaF flux could enhance red emission attributed to D-1(2) -> H-3(4) transition owing to improving the crystallinity of phosphors and reducing point defects near P3+ through the substitution of O2- by F- and Ca2+ by Na+. The energy storage trap (oxygen vacancy) near IVCT state played the key role for trapping electrons, accounting for the LAG emission and the average depth of trap was 0.39 eV. The CIE chromaticity coordinates were very close to that of the ideal red light and the CP was as high as 99.98%. The maximal S-a and S-r was as high as similar to 0.015 K-1 and similar to 5.2% K-1, respectively. The thermal induced relaxation between the P-3(j) levels and D-1(2) level through the IVCT state was supposed to account for the excellent optical temperature sensing. Our work may provide a useful inspiration for developing ultrahigh sensitive optical temperature sensors. (C) 2019 Elsevier B.V. All rights reserved.

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