High temperature (nano)thermometers based on LiLuF4:Er3+,Yb3+nano- And microcrystals. Confounded results for core-shell nanocrystals

Publication date

2021-03-14

Authors

Kaczmarek, Anna M.ISNI 000000052392406X
Suta, MarkusISNI 0000000492926467
Rijckaert, Hannes
van Swieten, T.P.ISNI 0000000492798266
Van Driessche, Isabel
Kaczmarek, Mariusz K.
Meijerink, A.ISNI 000000039216731X

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taverne

Abstract

Recent technological developments require knowledge of temperature down to the micro- or even nano-scale. Lanthanide-doped nanoparticles became a popular tool to achieve this. Their temperature sensitive luminescence enables their application as remote thermometers and for mapping temperature profiles with high spatial resolution. Applicability of luminescence thermometry is, however, often limited at high temperatures. In nanoelectronics or chemical reactors, high temperatures above 500 K are common and new approaches for accurate high temperature sensing need to be developed. In this work, we report three different shapes of upconverting LiLuF4:2% Er3+,18% Yb3+nanocrystals both with and without shells and study the influence of the shell on the thermometric properties. We observed peculiar behavior of the core-shell particles suggesting the presence of the dopants within the protective and ‘undoped’ shells. Coating the nanoparticles with a silica layer extends the operational temperature range. In an upconversion (UC) Yb3+-Er3+system temperature sensing relies on thermal coupling between the4S3/2and2H11/2energy levels. At sufficiently high temperatures (>550 K), we observe additional thermal coupling involving the higher4F7/2energy levels. The larger energy gap allows to increase the relative sensitivity at elevated temperatures and to sustain a high temperature precision over a wider temperature range than for a two-level Boltzmann thermometer. The thermal coupling between the4S3/2and2H11/2energy levels is used for lower temperature sensing (550 K).

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Citation

Kaczmarek, A M, Suta, M, Rijckaert, H, van Swieten, T P, Van Driessche, I, Kaczmarek, M K & Meijerink, A 2021, 'High temperature (nano)thermometers based on LiLuF4:Er3+,Yb3+nano- And microcrystals. Confounded results for core-shell nanocrystals', Journal of Materials Chemistry B, vol. 9, no. 10, pp. 3589-3600. https://doi.org/10.1039/d0tc05865c