Repozytorium

From Deep Cryogenics to Extreme Heat: Unlocking Single-Ion Luminescent Thermometry with Pr3+-Activated Ca3Sc2Si3O12 and Ca3Sc2Ge3O12 Garnets

Autorzy

Dagmara Kulesza

Justyna Zeler

Markus Suta

Eugeniusz Zych

Rok wydania

2025

Czasopismo

Chemistry of Materials

Numer woluminu

37

Strony

7778-7792

DOI

10.1021/acs.chemmater.5c01216

Kolekcja

Naukowa

Język

Angielski

Typ publikacji

Artykuł

Streszczenie

Luminescence thermometry is gaining prominence as a noncontact-reading temperature sensing technique, offering high precision, robustness, and material tunability. In this work, we report Pr3+-doped garnets, Ca3Sc2Si3O12:0.1% Pr and Ca3Sc2Ge3O12:0.1% Pr, as promising candidates for wide-range optical thermometry based on both emission intensity and decay time metrics. The silicate garnet exhibits a record operational range of 25–1225 K, with relative thermal sensitivity spanning 0.5–1.3%·K–1 over 250–1225 K, sustained by intense and thermally controlled 4f15d1 → 4f2 emission. Temperature-dependent luminescence measurements reveal a continuous and monotonic decrease in both emission intensity and lifetime, supporting two-modal reliable, quantitative thermal readout. At elevated temperatures (≥900 K), thermally stimulated back-transfer from the 1D2 to the 3P0 level activates an additional 3P0/1D2 intensity ratio metric, achieving 0.44%·K–1 sensitivity. The germanate counterpart shows strong performance in the 20–225 K range, with relative sensitivities exceeding 5%·K–1. These Pr3+-activated phosphors, featuring submicron particle size, phase stability, and broad thermal response, enable multimodal, single-ion thermometry across a continuous, ultrawide temperature span. These findings highlight the potential of garnet hosts for next-generation luminescent thermometers in high-demand environments such as catalysis, aerospace, nuclear monitoring, and space exploration.

Słowa kluczowe

Energy, Luminescence, Materials, Phonons, Phosphors, Quenching, Thermodynamic properties

Licencja otwartego dostępu

CC-BY

Licencja na prawach której można swobodnie kopiować, rozprowadzać, zmieniać i remiksować objęty prawem autorskim utwór (Utwór-przedmiot prawa autorskiego) pod warunkiem podania imienia i nazwiska autora utworu pierwotnego oraz źródła pochodzenia utworu.

Pełny tekst licencji: https://creativecommons.org/licenses/by/3.0/pl/legalcode

Adres publiczny

http://dx.doi.org/10.1021/acs.chemmater.5c01216

Strona internetowa wydawcy

https://www.acs.org/content/acs/en.html

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