Repozytorium

Tm2+ activated SrB4O7 bifunctional sensor of temperature and pressure : highly sensitive, multi‐parameter luminescence thermometry and manometry.

Autorzy

Teng Zheng

Małgorzata Sójka

Marcin Runowski

Przemysław Woźny

Stefan Lis

Eugeniusz Zych

Rok wydania

2021

Czasopismo

Advanced Optical Materials

Numer woluminu

9

Strony

2101507/1-2101507/10

DOI

10.1002/adom.202101507

Kolekcja

Naukowa

Język

Angielski

Typ publikacji

Artykuł

Streszczenie

Noninvasive sensing of temperature and pressure offers new and exciting opportunities to investigate and monitor the variation of physicochemical and spectroscopic properties of materials under extreme conditions. In this work, Tm2+-doped SrB4O7 phosphor material—a novel, contactless bifunctional, and multimodal optical sensor for pressure and temperature is reported. A series of SrB4O7xTm2+ samples are synthesized via a high-temperature solid-state method in air. The impact of high pressure (up to ≈13 GPa) and temperature (from 10 to 400 K) on spectroscopic properties of SrB4O7:Tm2+ is investigated. The emission band of Tm2+ demonstrates a significant spectral shift and a band broadening as a function of both pressure and temperature. Such a result is a consequence of a significant change of vibronic components of the Tm2+ 4f125d ↔ 4f13 zero-phonon line. The emission bandwidth and its spectral position exhibit excellent sensitivities to pressure, that is, ≈23.17 and ≈−11.85 cm−1 GPa−1, respectively. Furthermore, for the first time, it is shown that temperature sensing can be realized via four different pathways in a single material: i) bandwidth, ii) band shift, iii) band intensity ratio, and iv) luminescence lifetime, with maximal sensitivities of ≈3.85 cm−1 K−1, 1.44 cm−1 K−1, 1.48% K−1 and 4.16% K−1, respectively.

Adres publiczny

http://dx.doi.org/10.1002/adom.202101507

Strona internetowa wydawcy

onlinelibrary.wiley.com

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