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A Novel Red-Emitting Na(2)NbOF(5):Mn(4+) Phosphor with Ultrahigh Color Purity for Warm White Lighting and Wide-Gamut Backlight Displays

In this work, a novel red-emitting oxyfluoride phosphor Na(2)NbOF(5):Mn(4+) with an ultra-intense zero-phonon line (ZPL) was successfully synthesized by hydrothermal method. The phase composition and luminescent properties of Na(2)NbOF(5):Mn(4+) were studied in detail. The photoluminescence excitati...

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Autores principales: Hou, Jingshan, Yin, Wenxiang, Dong, Langping, Li, Yang, Liu, Yufeng, Liu, Zhifu, Zhao, Guoying, Zhang, Ganghua, Fang, Yongzheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8467541/
https://www.ncbi.nlm.nih.gov/pubmed/34576541
http://dx.doi.org/10.3390/ma14185317
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author Hou, Jingshan
Yin, Wenxiang
Dong, Langping
Li, Yang
Liu, Yufeng
Liu, Zhifu
Zhao, Guoying
Zhang, Ganghua
Fang, Yongzheng
author_facet Hou, Jingshan
Yin, Wenxiang
Dong, Langping
Li, Yang
Liu, Yufeng
Liu, Zhifu
Zhao, Guoying
Zhang, Ganghua
Fang, Yongzheng
author_sort Hou, Jingshan
collection PubMed
description In this work, a novel red-emitting oxyfluoride phosphor Na(2)NbOF(5):Mn(4+) with an ultra-intense zero-phonon line (ZPL) was successfully synthesized by hydrothermal method. The phase composition and luminescent properties of Na(2)NbOF(5):Mn(4+) were studied in detail. The photoluminescence excitation spectrum contains two intense excitation bands centered at 369 and 470 nm, which match well with commercial UV and blue light-emitting diode (LED) chips. When excited by 470 nm blue light, Na(2)NbOF(5):Mn(4+) exhibits red light emission dominated by ZPL. Notably, the color purity of the Na(2)NbOF(5):Mn(4+) red phosphor can reach 99.9%. Meanwhile, the Na(2)NbOF(5):Mn(4+) phosphor has a shorter fluorescence decay time than commercial K(2)SiF(6):Mn(4+), which is conducive to fast switching of images in display applications. Profiting from the intense ZPL, white light-emitting diode (WLED) with high color rendering index of Ra = 86.2 and low correlated color temperature of T(c) = 3133 K is realized using yellow YAG:Ce(3+) and red Na(2)NbOF(5):Mn(4+) phosphor. The WLED fabricated using CsPbBr(3) quantum dots (QDs) and red Na(2)NbOF(5):Mn(4+) phosphor shows a wide color gamut of 127.56% NTSC (National Television Standard Committee). The results show that red-emitting Na(2)NbOF(5):Mn(4+) phosphor has potential application prospects in WLED lighting and display backlight.
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spelling pubmed-84675412021-09-27 A Novel Red-Emitting Na(2)NbOF(5):Mn(4+) Phosphor with Ultrahigh Color Purity for Warm White Lighting and Wide-Gamut Backlight Displays Hou, Jingshan Yin, Wenxiang Dong, Langping Li, Yang Liu, Yufeng Liu, Zhifu Zhao, Guoying Zhang, Ganghua Fang, Yongzheng Materials (Basel) Article In this work, a novel red-emitting oxyfluoride phosphor Na(2)NbOF(5):Mn(4+) with an ultra-intense zero-phonon line (ZPL) was successfully synthesized by hydrothermal method. The phase composition and luminescent properties of Na(2)NbOF(5):Mn(4+) were studied in detail. The photoluminescence excitation spectrum contains two intense excitation bands centered at 369 and 470 nm, which match well with commercial UV and blue light-emitting diode (LED) chips. When excited by 470 nm blue light, Na(2)NbOF(5):Mn(4+) exhibits red light emission dominated by ZPL. Notably, the color purity of the Na(2)NbOF(5):Mn(4+) red phosphor can reach 99.9%. Meanwhile, the Na(2)NbOF(5):Mn(4+) phosphor has a shorter fluorescence decay time than commercial K(2)SiF(6):Mn(4+), which is conducive to fast switching of images in display applications. Profiting from the intense ZPL, white light-emitting diode (WLED) with high color rendering index of Ra = 86.2 and low correlated color temperature of T(c) = 3133 K is realized using yellow YAG:Ce(3+) and red Na(2)NbOF(5):Mn(4+) phosphor. The WLED fabricated using CsPbBr(3) quantum dots (QDs) and red Na(2)NbOF(5):Mn(4+) phosphor shows a wide color gamut of 127.56% NTSC (National Television Standard Committee). The results show that red-emitting Na(2)NbOF(5):Mn(4+) phosphor has potential application prospects in WLED lighting and display backlight. MDPI 2021-09-15 /pmc/articles/PMC8467541/ /pubmed/34576541 http://dx.doi.org/10.3390/ma14185317 Text en © 2021 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
Hou, Jingshan
Yin, Wenxiang
Dong, Langping
Li, Yang
Liu, Yufeng
Liu, Zhifu
Zhao, Guoying
Zhang, Ganghua
Fang, Yongzheng
A Novel Red-Emitting Na(2)NbOF(5):Mn(4+) Phosphor with Ultrahigh Color Purity for Warm White Lighting and Wide-Gamut Backlight Displays
title A Novel Red-Emitting Na(2)NbOF(5):Mn(4+) Phosphor with Ultrahigh Color Purity for Warm White Lighting and Wide-Gamut Backlight Displays
title_full A Novel Red-Emitting Na(2)NbOF(5):Mn(4+) Phosphor with Ultrahigh Color Purity for Warm White Lighting and Wide-Gamut Backlight Displays
title_fullStr A Novel Red-Emitting Na(2)NbOF(5):Mn(4+) Phosphor with Ultrahigh Color Purity for Warm White Lighting and Wide-Gamut Backlight Displays
title_full_unstemmed A Novel Red-Emitting Na(2)NbOF(5):Mn(4+) Phosphor with Ultrahigh Color Purity for Warm White Lighting and Wide-Gamut Backlight Displays
title_short A Novel Red-Emitting Na(2)NbOF(5):Mn(4+) Phosphor with Ultrahigh Color Purity for Warm White Lighting and Wide-Gamut Backlight Displays
title_sort novel red-emitting na(2)nbof(5):mn(4+) phosphor with ultrahigh color purity for warm white lighting and wide-gamut backlight displays
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8467541/
https://www.ncbi.nlm.nih.gov/pubmed/34576541
http://dx.doi.org/10.3390/ma14185317
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