4.7 Article

Upconversion properties and temperature sensing behaviors in visible and near-infrared region based on fluorescence intensity ratio in LuVO4: Yb3+/Er3+

期刊

JOURNAL OF ALLOYS AND COMPOUNDS
卷 769, 期 -, 页码 325-331

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2018.07.368

关键词

Energy transfer; Upconversion; Fluorescence intensity ratio; Optical thermometry; LuVO4: Yb3+/Er3+

资金

  1. National Natural Science Foundation of China [11674044, 11704054]
  2. Chongqing Research Program of Basic Research and Frontier Technology [CSTC2017jcy-jAX0046]
  3. Science and Technology Research Program of Chongqing Municipal Education Commission [KJ1704071]
  4. Chongqing Key Laboratory Improvement Plan [CSTC 2014pt-sy40001]

向作者/读者索取更多资源

A high temperature solid state method was used to synthesize the Yb3+ and Er3+ codoped LuVO4. The efficient energy transfer (ET) processes from Yb3+ to Er3+ has been demonstrated by upconversion (UC) spectra, near-infrared (NIR) spectra and lifetime curves. The optimal doping concentration for Yb3+ and Er3+ is 20 mol % and 2 mol %, respectively. Meanwhile, the temperature sensing behaviors in visible and NIR region based on fluorescence intensity ratio (FIR) have been explored in detail. In visible region, the optical thermometry of LuVO4: Yb3+/Er3+ is investigated via the FIR of the two thermally coupled energy levels H-2(11/2) and S-4(3/2) of Er3+, accompanying with a maximal absolute sensitivity S-A of 0.82% K-1 at 423 K. In NIR region, the FIRs of Peak 1 (located at 1595 nm) to Peak 3 (located at 1660 nm) and Peak 2 (located at 1637 nm) to Peak 3, which are all assigned to I-4(13/2) -> I-4(15/2) transition of Er3+, can be well fitted related to the temperature, with the maximal S-A of 1.85% K-1 and 0.62% K-1 respectively. All the results suggest that LuVO4: Yb3+/Er3+ powders is a potential material for optical thermometry in both visible and NIR region based on FIR. (C) 2018 Elsevier B.V. All rights reserved.

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