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A flexible luminescence film with temperature and infrared response based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors for optical information storage applications

Deep-trap luminescent materials have attracted great attention for optical information storage applications. However, the flexible luminescence films based on red luminescence materials with temperature and infrared response are scarce. In this study, we have successfully developed various novel fle...

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Detalles Bibliográficos
Autores principales: Song, Hao, Wu, Xiuping, Zhang, Yanjie, Xu, Shichang, Li, Bing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9382283/
https://www.ncbi.nlm.nih.gov/pubmed/35991996
http://dx.doi.org/10.1016/j.heliyon.2022.e10045
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author Song, Hao
Wu, Xiuping
Zhang, Yanjie
Xu, Shichang
Li, Bing
author_facet Song, Hao
Wu, Xiuping
Zhang, Yanjie
Xu, Shichang
Li, Bing
author_sort Song, Hao
collection PubMed
description Deep-trap luminescent materials have attracted great attention for optical information storage applications. However, the flexible luminescence films based on red luminescence materials with temperature and infrared response are scarce. In this study, we have successfully developed various novel flexible red emitting films based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors through screen-printing and spin-coating technologies, respectively. Interestingly, the fabricated flexible luminescence films exhibit unique temperature and infrared responsive properties for optical information storage by releasing photons in response to thermal or infrared stimulation. Notably, deep-trap red emitting Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors are crucial for the optical information storage properties of the films. Two emission peaks of Sr(2)Si(5)N(8):Dy(3+) phosphors at 476 nm and 577 nm are observed under excitation at 345 nm, corresponding to the radiative transition occurs from the (4)F(9/2) level to the (6)H(13/2) and (6)H(15/2) levels of Dy(3+). When Dy(3+) and Eu(2+) ions are co-doped in Sr(2)Si(5)N(8), the energy transfer from Dy(3+) to Eu(2+) in Sr(2)Si(5)N(8) matrix is found and the decay time confirms that Dy(3+) ions can be acted as deep trap centers to storage photons. For Sr(2)Si(5)N(8):Eu(2+),Dy(3+) phosphors and the corresponding flexible luminescence films, the specific patterns (for example apple and note patterns) are firstly recorded under NUV or blue light excitation and then reappear through thermal stimulation or near-infrared photo-stimulation (980 nm laser). This work not only validates the feasibility of Sr(2)Si(5)N(8):Eu(2+),Dy(3+) phosphors as deep-trap red emitting luminescence materials, but also suggests the applications of flexible luminescence films for optical information storage.
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spelling pubmed-93822832022-08-18 A flexible luminescence film with temperature and infrared response based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors for optical information storage applications Song, Hao Wu, Xiuping Zhang, Yanjie Xu, Shichang Li, Bing Heliyon Research Article Deep-trap luminescent materials have attracted great attention for optical information storage applications. However, the flexible luminescence films based on red luminescence materials with temperature and infrared response are scarce. In this study, we have successfully developed various novel flexible red emitting films based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors through screen-printing and spin-coating technologies, respectively. Interestingly, the fabricated flexible luminescence films exhibit unique temperature and infrared responsive properties for optical information storage by releasing photons in response to thermal or infrared stimulation. Notably, deep-trap red emitting Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors are crucial for the optical information storage properties of the films. Two emission peaks of Sr(2)Si(5)N(8):Dy(3+) phosphors at 476 nm and 577 nm are observed under excitation at 345 nm, corresponding to the radiative transition occurs from the (4)F(9/2) level to the (6)H(13/2) and (6)H(15/2) levels of Dy(3+). When Dy(3+) and Eu(2+) ions are co-doped in Sr(2)Si(5)N(8), the energy transfer from Dy(3+) to Eu(2+) in Sr(2)Si(5)N(8) matrix is found and the decay time confirms that Dy(3+) ions can be acted as deep trap centers to storage photons. For Sr(2)Si(5)N(8):Eu(2+),Dy(3+) phosphors and the corresponding flexible luminescence films, the specific patterns (for example apple and note patterns) are firstly recorded under NUV or blue light excitation and then reappear through thermal stimulation or near-infrared photo-stimulation (980 nm laser). This work not only validates the feasibility of Sr(2)Si(5)N(8):Eu(2+),Dy(3+) phosphors as deep-trap red emitting luminescence materials, but also suggests the applications of flexible luminescence films for optical information storage. Elsevier 2022-08-01 /pmc/articles/PMC9382283/ /pubmed/35991996 http://dx.doi.org/10.1016/j.heliyon.2022.e10045 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Song, Hao
Wu, Xiuping
Zhang, Yanjie
Xu, Shichang
Li, Bing
A flexible luminescence film with temperature and infrared response based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors for optical information storage applications
title A flexible luminescence film with temperature and infrared response based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors for optical information storage applications
title_full A flexible luminescence film with temperature and infrared response based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors for optical information storage applications
title_fullStr A flexible luminescence film with temperature and infrared response based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors for optical information storage applications
title_full_unstemmed A flexible luminescence film with temperature and infrared response based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors for optical information storage applications
title_short A flexible luminescence film with temperature and infrared response based on Eu(2+)/Dy(3+) co-doped Sr(2)Si(5)N(8) phosphors for optical information storage applications
title_sort flexible luminescence film with temperature and infrared response based on eu(2+)/dy(3+) co-doped sr(2)si(5)n(8) phosphors for optical information storage applications
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9382283/
https://www.ncbi.nlm.nih.gov/pubmed/35991996
http://dx.doi.org/10.1016/j.heliyon.2022.e10045
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