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Sol-Gel Synthesis and Photoluminescence Properties of a Far-Red Emitting Phosphor BaLaMgTaO(6):Mn(4+) for Plant Growth LEDs

Far-red (FR) emitting LEDs are known as a promising supplement light source for photo-morphogenesis of plants, in which FR emitting phosphors are indispensable components. However, mostly reported FR emitting phosphors are suffering from problems of wavelength mismatch with LED chips or low quantum...

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Detalles Bibliográficos
Autores principales: Fan, Niansi, Du, Quan, Guo, Rui, Luo, Lan, Wang, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254883/
https://www.ncbi.nlm.nih.gov/pubmed/37297163
http://dx.doi.org/10.3390/ma16114029
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author Fan, Niansi
Du, Quan
Guo, Rui
Luo, Lan
Wang, Li
author_facet Fan, Niansi
Du, Quan
Guo, Rui
Luo, Lan
Wang, Li
author_sort Fan, Niansi
collection PubMed
description Far-red (FR) emitting LEDs are known as a promising supplement light source for photo-morphogenesis of plants, in which FR emitting phosphors are indispensable components. However, mostly reported FR emitting phosphors are suffering from problems of wavelength mismatch with LED chips or low quantum efficiency, which are still far from practical applications. Here, a new efficient FR emitting double-perovskite phosphor BaLaMgTaO(6):Mn(4+) (BLMT:Mn(4+)) has been prepared by sol-gel method. The crystal structure, morphology and photoluminescence properties have been investigated in detail. BLMT:Mn(4+) phosphor has two strong and wide excitation bands in the range of 250–600 nm, which matches well with a near-UV or blue chip. Under 365 nm or 460 nm excitation, BLMT:Mn(4+) emits an intense FR light ranging from 650 to 780 nm with maximum emission at 704 nm due to (2)E(g) → (4)A(2g) forbidden transition of Mn(4+) ion. The critical quenching concentration of Mn(4+) in BLMT is 0.6 mol%, and its corresponding internal quantum efficiency is as high as 61%. Moreover, BLMT:Mn(4+) phosphor has good thermal stability, with emission intensity at 423 K keeping 40% of the room temperature value. The LED devices fabricated with BLMT:Mn(4+) sample exhibit bright FR emission, which greatly overlaps with the absorption curve of FR absorbing phytochrome, indicating that BLMT:Mn(4+) is a promising FR emitting phosphor for plant growth LEDs.
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spelling pubmed-102548832023-06-10 Sol-Gel Synthesis and Photoluminescence Properties of a Far-Red Emitting Phosphor BaLaMgTaO(6):Mn(4+) for Plant Growth LEDs Fan, Niansi Du, Quan Guo, Rui Luo, Lan Wang, Li Materials (Basel) Article Far-red (FR) emitting LEDs are known as a promising supplement light source for photo-morphogenesis of plants, in which FR emitting phosphors are indispensable components. However, mostly reported FR emitting phosphors are suffering from problems of wavelength mismatch with LED chips or low quantum efficiency, which are still far from practical applications. Here, a new efficient FR emitting double-perovskite phosphor BaLaMgTaO(6):Mn(4+) (BLMT:Mn(4+)) has been prepared by sol-gel method. The crystal structure, morphology and photoluminescence properties have been investigated in detail. BLMT:Mn(4+) phosphor has two strong and wide excitation bands in the range of 250–600 nm, which matches well with a near-UV or blue chip. Under 365 nm or 460 nm excitation, BLMT:Mn(4+) emits an intense FR light ranging from 650 to 780 nm with maximum emission at 704 nm due to (2)E(g) → (4)A(2g) forbidden transition of Mn(4+) ion. The critical quenching concentration of Mn(4+) in BLMT is 0.6 mol%, and its corresponding internal quantum efficiency is as high as 61%. Moreover, BLMT:Mn(4+) phosphor has good thermal stability, with emission intensity at 423 K keeping 40% of the room temperature value. The LED devices fabricated with BLMT:Mn(4+) sample exhibit bright FR emission, which greatly overlaps with the absorption curve of FR absorbing phytochrome, indicating that BLMT:Mn(4+) is a promising FR emitting phosphor for plant growth LEDs. MDPI 2023-05-28 /pmc/articles/PMC10254883/ /pubmed/37297163 http://dx.doi.org/10.3390/ma16114029 Text en © 2023 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
Fan, Niansi
Du, Quan
Guo, Rui
Luo, Lan
Wang, Li
Sol-Gel Synthesis and Photoluminescence Properties of a Far-Red Emitting Phosphor BaLaMgTaO(6):Mn(4+) for Plant Growth LEDs
title Sol-Gel Synthesis and Photoluminescence Properties of a Far-Red Emitting Phosphor BaLaMgTaO(6):Mn(4+) for Plant Growth LEDs
title_full Sol-Gel Synthesis and Photoluminescence Properties of a Far-Red Emitting Phosphor BaLaMgTaO(6):Mn(4+) for Plant Growth LEDs
title_fullStr Sol-Gel Synthesis and Photoluminescence Properties of a Far-Red Emitting Phosphor BaLaMgTaO(6):Mn(4+) for Plant Growth LEDs
title_full_unstemmed Sol-Gel Synthesis and Photoluminescence Properties of a Far-Red Emitting Phosphor BaLaMgTaO(6):Mn(4+) for Plant Growth LEDs
title_short Sol-Gel Synthesis and Photoluminescence Properties of a Far-Red Emitting Phosphor BaLaMgTaO(6):Mn(4+) for Plant Growth LEDs
title_sort sol-gel synthesis and photoluminescence properties of a far-red emitting phosphor balamgtao(6):mn(4+) for plant growth leds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254883/
https://www.ncbi.nlm.nih.gov/pubmed/37297163
http://dx.doi.org/10.3390/ma16114029
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