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Luminescence properties of ZnGa(2)O(4):Cr(3+),Bi(3+) nanophosphors for thermometry applications

Chromium(iii) and bismuth(iii) co-doped ZnGa(2)O(4) nanoparticles are synthesized by a hydrothermal method assisted by microwave heating. The obtained nanoparticles, with a diameter smaller than 10 nm, present good luminescence emission in the deep red range centered at 695 nm after coating with a s...

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Autores principales: Glais, E., Pellerin, M., Castaing, V., Alloyeau, D., Touati, N., Viana, B., Chanéac, C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9091948/
https://www.ncbi.nlm.nih.gov/pubmed/35558763
http://dx.doi.org/10.1039/c8ra08182d
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author Glais, E.
Pellerin, M.
Castaing, V.
Alloyeau, D.
Touati, N.
Viana, B.
Chanéac, C.
author_facet Glais, E.
Pellerin, M.
Castaing, V.
Alloyeau, D.
Touati, N.
Viana, B.
Chanéac, C.
author_sort Glais, E.
collection PubMed
description Chromium(iii) and bismuth(iii) co-doped ZnGa(2)O(4) nanoparticles are synthesized by a hydrothermal method assisted by microwave heating. The obtained nanoparticles, with a diameter smaller than 10 nm, present good luminescence emission in the deep red range centered at 695 nm after coating with a silica layer and calcination at 1000 °C during 2 h. Persistent luminescence and photoluminescence properties are investigated at several temperatures. Bandwidth and luminescence intensity ratio of persistent emission do not present enough change with temperature to obtain a competitive nanothermometer with high sensitivity. Nevertheless, persistent luminescence decay curves present a significant shape change since the trap levels involved in the deexcitation mechanism are unfilled with increase of temperature. Even if the sensitivity reaches 1.7% °C(−1) at 190 °C, the repeatability is not optimal. Furthermore, photoluminescent lifetime in the millisecond range extracted from the photoluminescence decay profiles drastically decreases with temperature increase. This variation is attributed to the thermal equilibrium between two thermally coupled chromium(iii) levels ((2)E and (4)T(2)) that have very different deexcitation lifetimes. For ZnGa(2)O(4):Cr(3+)(0.5%),Bi(3+)(0.5%), the temperature sensitivity reaches 1.93% °C(−1) at 200 °C. Therefore, this kind of nanoparticle is a very promising thermal sensor for temperature determination at the nanoscale.
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spelling pubmed-90919482022-05-11 Luminescence properties of ZnGa(2)O(4):Cr(3+),Bi(3+) nanophosphors for thermometry applications Glais, E. Pellerin, M. Castaing, V. Alloyeau, D. Touati, N. Viana, B. Chanéac, C. RSC Adv Chemistry Chromium(iii) and bismuth(iii) co-doped ZnGa(2)O(4) nanoparticles are synthesized by a hydrothermal method assisted by microwave heating. The obtained nanoparticles, with a diameter smaller than 10 nm, present good luminescence emission in the deep red range centered at 695 nm after coating with a silica layer and calcination at 1000 °C during 2 h. Persistent luminescence and photoluminescence properties are investigated at several temperatures. Bandwidth and luminescence intensity ratio of persistent emission do not present enough change with temperature to obtain a competitive nanothermometer with high sensitivity. Nevertheless, persistent luminescence decay curves present a significant shape change since the trap levels involved in the deexcitation mechanism are unfilled with increase of temperature. Even if the sensitivity reaches 1.7% °C(−1) at 190 °C, the repeatability is not optimal. Furthermore, photoluminescent lifetime in the millisecond range extracted from the photoluminescence decay profiles drastically decreases with temperature increase. This variation is attributed to the thermal equilibrium between two thermally coupled chromium(iii) levels ((2)E and (4)T(2)) that have very different deexcitation lifetimes. For ZnGa(2)O(4):Cr(3+)(0.5%),Bi(3+)(0.5%), the temperature sensitivity reaches 1.93% °C(−1) at 200 °C. Therefore, this kind of nanoparticle is a very promising thermal sensor for temperature determination at the nanoscale. The Royal Society of Chemistry 2018-12-14 /pmc/articles/PMC9091948/ /pubmed/35558763 http://dx.doi.org/10.1039/c8ra08182d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Glais, E.
Pellerin, M.
Castaing, V.
Alloyeau, D.
Touati, N.
Viana, B.
Chanéac, C.
Luminescence properties of ZnGa(2)O(4):Cr(3+),Bi(3+) nanophosphors for thermometry applications
title Luminescence properties of ZnGa(2)O(4):Cr(3+),Bi(3+) nanophosphors for thermometry applications
title_full Luminescence properties of ZnGa(2)O(4):Cr(3+),Bi(3+) nanophosphors for thermometry applications
title_fullStr Luminescence properties of ZnGa(2)O(4):Cr(3+),Bi(3+) nanophosphors for thermometry applications
title_full_unstemmed Luminescence properties of ZnGa(2)O(4):Cr(3+),Bi(3+) nanophosphors for thermometry applications
title_short Luminescence properties of ZnGa(2)O(4):Cr(3+),Bi(3+) nanophosphors for thermometry applications
title_sort luminescence properties of znga(2)o(4):cr(3+),bi(3+) nanophosphors for thermometry applications
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9091948/
https://www.ncbi.nlm.nih.gov/pubmed/35558763
http://dx.doi.org/10.1039/c8ra08182d
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