Issue 17, 2022

Exceptional low-temperature fluorescence sensing properties in novel KBaY(MoO4)3:Yb3+,Ho3+ materials based on FIR of Ho3+ transitions 5F5(1)5I8/5S25I8

Abstract

In this report, a series of novel KBaY(MoO4)3:Yb3+,Ho3+ (KBYMO:Yb3+,Ho3+) materials with intense up-conversion (UC) luminescence properties were synthesized using a high-temperature solid-state reaction method. Upon 975 nm near infrared (NIR) laser excitation, KBYMO:Yb3+,Ho3+ mainly showed two emission bands at around 544 and 658 nm, as well as a feeble one at around 755 nm, corresponding to Ho3+ 5F4,5S25I8, 5F55I8 and 5F4,5S25I7 transitions, respectively. The UC luminescence mechanism in this kind of material was determined to be a two-photon process, including simultaneous energy transfer from Yb3+ to Ho3+. In order to explore its potential applications in low-temperature fluorescent thermometers, the temperature-dependent behavior (53–293 K) of KBYMO:0.60Yb3+,0.01Ho3+ as a representative was investigated in detail. Based on fluorescence intensity ratio (FIR) technology, the calculated FIR values of I640/550 (5F5(1)5I8/5S25I8) in KBYMO:0.60Yb3+,0.01Ho3+ (53–293 K) were adopted as the original data, which have been rarely used in previous systems. Therefore, the optimal absolute sensitivity Sa and relative sensitivity Sr were determined to be 0.0186 K−1 (233 K) and 31.45% K−1 (53 K), respectively, showing its potential as a key component material in low-temperature fluorescent thermometers.

Graphical abstract: Exceptional low-temperature fluorescence sensing properties in novel KBaY(MoO4)3:Yb3+,Ho3+ materials based on FIR of Ho3+ transitions 5F5(1) → 5I8/5S2 → 5I8

Supplementary files

Article information

Article type
Communication
Submitted
16 Mar 2022
Accepted
09 Apr 2022
First published
11 Apr 2022

J. Mater. Chem. C, 2022,10, 6603-6610

Exceptional low-temperature fluorescence sensing properties in novel KBaY(MoO4)3:Yb3+,Ho3+ materials based on FIR of Ho3+ transitions 5F5(1)5I8/5S25I8

K. Li, D. Zhu and C. Yue, J. Mater. Chem. C, 2022, 10, 6603 DOI: 10.1039/D2TC01061E

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