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Preparation, crystal structure and luminescence properties of a novel single-phase red emitting phosphor CaSr(2)(PO(4))(2):Sm(3+),Li(+)

Single-phase CaSr(2)(PO(4))(2):Sm(3+),Li(+) phosphors were prepared via a high-temperature solid-state method under air. The powder X-ray diffraction patterns, scanning electron microscopy images, photoluminescence spectra, and concentration-dependent emission spectra were measured to characterize t...

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Autores principales: Chen, Yuying, Guo, Qingfeng, Liao, Libing, He, Mingyue, Zhou, Tianshuai, Mei, Lefu, Runowski, Marcin, Ma, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9060601/
https://www.ncbi.nlm.nih.gov/pubmed/35514613
http://dx.doi.org/10.1039/c9ra00264b
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author Chen, Yuying
Guo, Qingfeng
Liao, Libing
He, Mingyue
Zhou, Tianshuai
Mei, Lefu
Runowski, Marcin
Ma, Bin
author_facet Chen, Yuying
Guo, Qingfeng
Liao, Libing
He, Mingyue
Zhou, Tianshuai
Mei, Lefu
Runowski, Marcin
Ma, Bin
author_sort Chen, Yuying
collection PubMed
description Single-phase CaSr(2)(PO(4))(2):Sm(3+),Li(+) phosphors were prepared via a high-temperature solid-state method under air. The powder X-ray diffraction patterns, scanning electron microscopy images, photoluminescence spectra, and concentration-dependent emission spectra were measured to characterize the as-prepared phosphors and luminescence decay curves. The results showed that the CaSr(2)(PO(4))(2):Sm(3+),Li(+) phosphors exhibited red luminescence, and the emission spectra of the phosphors consisted of four sharp peaks at around 565, 601 (the strongest one), 647 and 707 nm. The optimum doping concentration of Sm(3+) ions was 0.09 (mol concentration), and the mechanism of energy transfer among Sm(3+) ions was defined to be quadrupole–quadrupole (q–q) interactions using Dexter's theory. The Blasse concentration quenching method was used to determine the critical distance R(c) for energy transfer among Sm(3+) as 10.99 Å. The results indicate that the as-prepared phosphors have good thermal stability with an activation energy of 0.773 eV via temperature-dependent emission spectra. Therefore, CaSr(2−2x)(PO(4))(2):xSm(3+),xLi(+) materials can be used as red-emitting phosphors for UV-pumped white-light emitting diodes.
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spelling pubmed-90606012022-05-04 Preparation, crystal structure and luminescence properties of a novel single-phase red emitting phosphor CaSr(2)(PO(4))(2):Sm(3+),Li(+) Chen, Yuying Guo, Qingfeng Liao, Libing He, Mingyue Zhou, Tianshuai Mei, Lefu Runowski, Marcin Ma, Bin RSC Adv Chemistry Single-phase CaSr(2)(PO(4))(2):Sm(3+),Li(+) phosphors were prepared via a high-temperature solid-state method under air. The powder X-ray diffraction patterns, scanning electron microscopy images, photoluminescence spectra, and concentration-dependent emission spectra were measured to characterize the as-prepared phosphors and luminescence decay curves. The results showed that the CaSr(2)(PO(4))(2):Sm(3+),Li(+) phosphors exhibited red luminescence, and the emission spectra of the phosphors consisted of four sharp peaks at around 565, 601 (the strongest one), 647 and 707 nm. The optimum doping concentration of Sm(3+) ions was 0.09 (mol concentration), and the mechanism of energy transfer among Sm(3+) ions was defined to be quadrupole–quadrupole (q–q) interactions using Dexter's theory. The Blasse concentration quenching method was used to determine the critical distance R(c) for energy transfer among Sm(3+) as 10.99 Å. The results indicate that the as-prepared phosphors have good thermal stability with an activation energy of 0.773 eV via temperature-dependent emission spectra. Therefore, CaSr(2−2x)(PO(4))(2):xSm(3+),xLi(+) materials can be used as red-emitting phosphors for UV-pumped white-light emitting diodes. The Royal Society of Chemistry 2019-02-08 /pmc/articles/PMC9060601/ /pubmed/35514613 http://dx.doi.org/10.1039/c9ra00264b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chen, Yuying
Guo, Qingfeng
Liao, Libing
He, Mingyue
Zhou, Tianshuai
Mei, Lefu
Runowski, Marcin
Ma, Bin
Preparation, crystal structure and luminescence properties of a novel single-phase red emitting phosphor CaSr(2)(PO(4))(2):Sm(3+),Li(+)
title Preparation, crystal structure and luminescence properties of a novel single-phase red emitting phosphor CaSr(2)(PO(4))(2):Sm(3+),Li(+)
title_full Preparation, crystal structure and luminescence properties of a novel single-phase red emitting phosphor CaSr(2)(PO(4))(2):Sm(3+),Li(+)
title_fullStr Preparation, crystal structure and luminescence properties of a novel single-phase red emitting phosphor CaSr(2)(PO(4))(2):Sm(3+),Li(+)
title_full_unstemmed Preparation, crystal structure and luminescence properties of a novel single-phase red emitting phosphor CaSr(2)(PO(4))(2):Sm(3+),Li(+)
title_short Preparation, crystal structure and luminescence properties of a novel single-phase red emitting phosphor CaSr(2)(PO(4))(2):Sm(3+),Li(+)
title_sort preparation, crystal structure and luminescence properties of a novel single-phase red emitting phosphor casr(2)(po(4))(2):sm(3+),li(+)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9060601/
https://www.ncbi.nlm.nih.gov/pubmed/35514613
http://dx.doi.org/10.1039/c9ra00264b
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