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Composite Detectors Based on Single-Crystalline Films and Single Crystals of Garnet Compounds

This manuscript summarizes recent results on the development of composite luminescent materials based on the single-crystalline films and single crystals of simple and mixed garnet compounds obtained by the liquid-phase epitaxy growth method. Such composite materials can be applied as scintillating...

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Autores principales: Witkiewicz-Lukaszek, Sandra, Gorbenko, Vitalii, Zorenko, Tetiana, Syrotych, Yurii, Mares, Jiri A., Nikl, Martin, Sidletskiy, Oleg, Bilski, Pawel, Yoshikawa, Akira, Zorenko, Yuriy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8838017/
https://www.ncbi.nlm.nih.gov/pubmed/35161191
http://dx.doi.org/10.3390/ma15031249
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author Witkiewicz-Lukaszek, Sandra
Gorbenko, Vitalii
Zorenko, Tetiana
Syrotych, Yurii
Mares, Jiri A.
Nikl, Martin
Sidletskiy, Oleg
Bilski, Pawel
Yoshikawa, Akira
Zorenko, Yuriy
author_facet Witkiewicz-Lukaszek, Sandra
Gorbenko, Vitalii
Zorenko, Tetiana
Syrotych, Yurii
Mares, Jiri A.
Nikl, Martin
Sidletskiy, Oleg
Bilski, Pawel
Yoshikawa, Akira
Zorenko, Yuriy
author_sort Witkiewicz-Lukaszek, Sandra
collection PubMed
description This manuscript summarizes recent results on the development of composite luminescent materials based on the single-crystalline films and single crystals of simple and mixed garnet compounds obtained by the liquid-phase epitaxy growth method. Such composite materials can be applied as scintillating and thermoluminescent (TL) detectors for radiation monitoring of mixed ionization fluxes, as well as scintillation screens in the microimaging techniques. The film and crystal parts of composite detectors were fabricated from efficient scintillation/TL materials based on Ce(3+)-, Pr(3+)-, and Sc(3+)-doped Lu(3)Al(5)O(12) garnets, as well as Ce(3+)-doped Gd(3)(−x)A(x)Al(5)(−y)Ga(y)O(12) mixed garnets, where A = Lu or Tb; x = 0–1; y = 2–3 with significantly different scintillation decay or positions of the main peaks in their TL glow curves. This work also summarizes the results of optical study of films, crystals, and epitaxial structures of these garnet compounds using absorption, cathodoluminescence, and photoluminescence. The scintillation and TL properties of the developed materials under α- and β-particles and γ-quanta excitations were studied as well. The most efficient variants of the composite scintillation and TL detectors for monitoring of composition of mixed beams of ionizing radiation were selected based on the results of this complex study.
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spelling pubmed-88380172022-02-13 Composite Detectors Based on Single-Crystalline Films and Single Crystals of Garnet Compounds Witkiewicz-Lukaszek, Sandra Gorbenko, Vitalii Zorenko, Tetiana Syrotych, Yurii Mares, Jiri A. Nikl, Martin Sidletskiy, Oleg Bilski, Pawel Yoshikawa, Akira Zorenko, Yuriy Materials (Basel) Review This manuscript summarizes recent results on the development of composite luminescent materials based on the single-crystalline films and single crystals of simple and mixed garnet compounds obtained by the liquid-phase epitaxy growth method. Such composite materials can be applied as scintillating and thermoluminescent (TL) detectors for radiation monitoring of mixed ionization fluxes, as well as scintillation screens in the microimaging techniques. The film and crystal parts of composite detectors were fabricated from efficient scintillation/TL materials based on Ce(3+)-, Pr(3+)-, and Sc(3+)-doped Lu(3)Al(5)O(12) garnets, as well as Ce(3+)-doped Gd(3)(−x)A(x)Al(5)(−y)Ga(y)O(12) mixed garnets, where A = Lu or Tb; x = 0–1; y = 2–3 with significantly different scintillation decay or positions of the main peaks in their TL glow curves. This work also summarizes the results of optical study of films, crystals, and epitaxial structures of these garnet compounds using absorption, cathodoluminescence, and photoluminescence. The scintillation and TL properties of the developed materials under α- and β-particles and γ-quanta excitations were studied as well. The most efficient variants of the composite scintillation and TL detectors for monitoring of composition of mixed beams of ionizing radiation were selected based on the results of this complex study. MDPI 2022-02-08 /pmc/articles/PMC8838017/ /pubmed/35161191 http://dx.doi.org/10.3390/ma15031249 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 Review
Witkiewicz-Lukaszek, Sandra
Gorbenko, Vitalii
Zorenko, Tetiana
Syrotych, Yurii
Mares, Jiri A.
Nikl, Martin
Sidletskiy, Oleg
Bilski, Pawel
Yoshikawa, Akira
Zorenko, Yuriy
Composite Detectors Based on Single-Crystalline Films and Single Crystals of Garnet Compounds
title Composite Detectors Based on Single-Crystalline Films and Single Crystals of Garnet Compounds
title_full Composite Detectors Based on Single-Crystalline Films and Single Crystals of Garnet Compounds
title_fullStr Composite Detectors Based on Single-Crystalline Films and Single Crystals of Garnet Compounds
title_full_unstemmed Composite Detectors Based on Single-Crystalline Films and Single Crystals of Garnet Compounds
title_short Composite Detectors Based on Single-Crystalline Films and Single Crystals of Garnet Compounds
title_sort composite detectors based on single-crystalline films and single crystals of garnet compounds
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8838017/
https://www.ncbi.nlm.nih.gov/pubmed/35161191
http://dx.doi.org/10.3390/ma15031249
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