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Effect of Graphene Addition on the Thermal and Persistent Luminescence Properties of Gd(2.994)Ce(0.006)Ga(3)Al(2)O(12) and Gd(2.964)Ce(0.006)Dy(0.03)Ga(3)Al(2)O(12) Ceramics

The gadolinium, gallium, aluminum garnet doped with cerium and co-doped with dysprosium ions were prepared using sol gel method. The SEM images show that after synthesis, the grains are below 100 nm. The powders were ultrasonically mixed with graphene nanoflakes and ceramics were prepared using the...

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Autores principales: Kujawa, Daniela, Szewczyk, Daria, Boiko, Vitalii, Bęben, Damian, Głuchowski, Paweł
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000643/
https://www.ncbi.nlm.nih.gov/pubmed/35407937
http://dx.doi.org/10.3390/ma15072606
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author Kujawa, Daniela
Szewczyk, Daria
Boiko, Vitalii
Bęben, Damian
Głuchowski, Paweł
author_facet Kujawa, Daniela
Szewczyk, Daria
Boiko, Vitalii
Bęben, Damian
Głuchowski, Paweł
author_sort Kujawa, Daniela
collection PubMed
description The gadolinium, gallium, aluminum garnet doped with cerium and co-doped with dysprosium ions were prepared using sol gel method. The SEM images show that after synthesis, the grains are below 100 nm. The powders were ultrasonically mixed with graphene nanoflakes and ceramics were prepared using the high pressure low temperature sintering technique. A series of the ceramics was prepared using different graphene content. The structure of the samples was examined using X-ray diffraction (XRD), scanning electron microscope (SEM) and Raman techniques. The spectroscopic properties were checked using conventional and persistent luminescence spectra measurements. The thermoluminescence glow curves and fading time of persistent luminescence measurements were performed to check how the graphene presence affects the electron traps number and depth. It was found that the addition of graphene improved the thermal conductivity of co-doped samples. This resulted in faster release of deeper traps and an increase in fading of persistent luminescence. The possibility of releasing energy from deep traps without additional stimulation may allow the use in different applications, the matrices and luminescent ions, which so far did not show persistent luminescence at room temperature.
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spelling pubmed-90006432022-04-12 Effect of Graphene Addition on the Thermal and Persistent Luminescence Properties of Gd(2.994)Ce(0.006)Ga(3)Al(2)O(12) and Gd(2.964)Ce(0.006)Dy(0.03)Ga(3)Al(2)O(12) Ceramics Kujawa, Daniela Szewczyk, Daria Boiko, Vitalii Bęben, Damian Głuchowski, Paweł Materials (Basel) Article The gadolinium, gallium, aluminum garnet doped with cerium and co-doped with dysprosium ions were prepared using sol gel method. The SEM images show that after synthesis, the grains are below 100 nm. The powders were ultrasonically mixed with graphene nanoflakes and ceramics were prepared using the high pressure low temperature sintering technique. A series of the ceramics was prepared using different graphene content. The structure of the samples was examined using X-ray diffraction (XRD), scanning electron microscope (SEM) and Raman techniques. The spectroscopic properties were checked using conventional and persistent luminescence spectra measurements. The thermoluminescence glow curves and fading time of persistent luminescence measurements were performed to check how the graphene presence affects the electron traps number and depth. It was found that the addition of graphene improved the thermal conductivity of co-doped samples. This resulted in faster release of deeper traps and an increase in fading of persistent luminescence. The possibility of releasing energy from deep traps without additional stimulation may allow the use in different applications, the matrices and luminescent ions, which so far did not show persistent luminescence at room temperature. MDPI 2022-04-01 /pmc/articles/PMC9000643/ /pubmed/35407937 http://dx.doi.org/10.3390/ma15072606 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kujawa, Daniela
Szewczyk, Daria
Boiko, Vitalii
Bęben, Damian
Głuchowski, Paweł
Effect of Graphene Addition on the Thermal and Persistent Luminescence Properties of Gd(2.994)Ce(0.006)Ga(3)Al(2)O(12) and Gd(2.964)Ce(0.006)Dy(0.03)Ga(3)Al(2)O(12) Ceramics
title Effect of Graphene Addition on the Thermal and Persistent Luminescence Properties of Gd(2.994)Ce(0.006)Ga(3)Al(2)O(12) and Gd(2.964)Ce(0.006)Dy(0.03)Ga(3)Al(2)O(12) Ceramics
title_full Effect of Graphene Addition on the Thermal and Persistent Luminescence Properties of Gd(2.994)Ce(0.006)Ga(3)Al(2)O(12) and Gd(2.964)Ce(0.006)Dy(0.03)Ga(3)Al(2)O(12) Ceramics
title_fullStr Effect of Graphene Addition on the Thermal and Persistent Luminescence Properties of Gd(2.994)Ce(0.006)Ga(3)Al(2)O(12) and Gd(2.964)Ce(0.006)Dy(0.03)Ga(3)Al(2)O(12) Ceramics
title_full_unstemmed Effect of Graphene Addition on the Thermal and Persistent Luminescence Properties of Gd(2.994)Ce(0.006)Ga(3)Al(2)O(12) and Gd(2.964)Ce(0.006)Dy(0.03)Ga(3)Al(2)O(12) Ceramics
title_short Effect of Graphene Addition on the Thermal and Persistent Luminescence Properties of Gd(2.994)Ce(0.006)Ga(3)Al(2)O(12) and Gd(2.964)Ce(0.006)Dy(0.03)Ga(3)Al(2)O(12) Ceramics
title_sort effect of graphene addition on the thermal and persistent luminescence properties of gd(2.994)ce(0.006)ga(3)al(2)o(12) and gd(2.964)ce(0.006)dy(0.03)ga(3)al(2)o(12) ceramics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000643/
https://www.ncbi.nlm.nih.gov/pubmed/35407937
http://dx.doi.org/10.3390/ma15072606
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