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Lumino-structural properties of Dy(3+) activated Na(3)Ba(2)LaNb(10)O(30) phosphors with enhanced internal quantum yield for w-LEDs

With an intend to develop white light emitting phosphor, for w-LED application, a series of dysprosium (Dy(3+)) doped novel Na(3)Ba(2)LaNb(10)O(30) phosphors were prepared using solid state reaction technique at 1300 °C. Their structural, morphological and vibrational spectroscopic analysis was perf...

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Autores principales: Poria, Kanishk, Lohan, Ravina, Bhatia, Sanjana, Kumar, Amit, Singh, Rajwinder, Deopa, Nisha, Punia, Rajesh, Shahi, Jangvir Singh, Rao, A. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10099766/
https://www.ncbi.nlm.nih.gov/pubmed/37063722
http://dx.doi.org/10.1039/d3ra01260c
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author Poria, Kanishk
Lohan, Ravina
Bhatia, Sanjana
Kumar, Amit
Singh, Rajwinder
Deopa, Nisha
Punia, Rajesh
Shahi, Jangvir Singh
Rao, A. S.
author_facet Poria, Kanishk
Lohan, Ravina
Bhatia, Sanjana
Kumar, Amit
Singh, Rajwinder
Deopa, Nisha
Punia, Rajesh
Shahi, Jangvir Singh
Rao, A. S.
author_sort Poria, Kanishk
collection PubMed
description With an intend to develop white light emitting phosphor, for w-LED application, a series of dysprosium (Dy(3+)) doped novel Na(3)Ba(2)LaNb(10)O(30) phosphors were prepared using solid state reaction technique at 1300 °C. Their structural, morphological and vibrational spectroscopic analysis was performed. We illustrate the luminescence characteristics of the prepared phosphors for various Dy(3+) ion doping concentration. The XRD analysis demonstrates that the prepared phosphors were in single phase, and of tetragonal tungsten bronze structure of the P4bm space group. The FE-SEM image reveals that the prepared phosphors contained irregular shaped both nano and micro particles. Under near-ultraviolet (n-UV) irradiation at 387 nm, the photoluminescence (PL) emission spectra shows three characteristic bands at 481 nm (blue), 575 nm (yellow) and 666 nm (red). Obtained optimized Dy(3+) ion concentration for the prepared sample is 7.0 mol%, beyond which the concentration quenching begins. Bonding between Dy–O is covalent in nature as confirmed by bonding parameters and the Dexter theory revealed that the energy transfer among Dy(3+) ions is dipole–diploe interaction. CIE chromaticity coordinates, CCT and color purity confirms the formation of warm white light emitting phosphors. Lifetime analysis demonstrates the longer decay time in the phosphors. The Internal Quantum Yield (IQE) and brightness (B) for the optimised phosphor is calculated as 45.35% and 11.41% respectively, which makes it a suitable phosphor for w-LED.
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spelling pubmed-100997662023-04-14 Lumino-structural properties of Dy(3+) activated Na(3)Ba(2)LaNb(10)O(30) phosphors with enhanced internal quantum yield for w-LEDs Poria, Kanishk Lohan, Ravina Bhatia, Sanjana Kumar, Amit Singh, Rajwinder Deopa, Nisha Punia, Rajesh Shahi, Jangvir Singh Rao, A. S. RSC Adv Chemistry With an intend to develop white light emitting phosphor, for w-LED application, a series of dysprosium (Dy(3+)) doped novel Na(3)Ba(2)LaNb(10)O(30) phosphors were prepared using solid state reaction technique at 1300 °C. Their structural, morphological and vibrational spectroscopic analysis was performed. We illustrate the luminescence characteristics of the prepared phosphors for various Dy(3+) ion doping concentration. The XRD analysis demonstrates that the prepared phosphors were in single phase, and of tetragonal tungsten bronze structure of the P4bm space group. The FE-SEM image reveals that the prepared phosphors contained irregular shaped both nano and micro particles. Under near-ultraviolet (n-UV) irradiation at 387 nm, the photoluminescence (PL) emission spectra shows three characteristic bands at 481 nm (blue), 575 nm (yellow) and 666 nm (red). Obtained optimized Dy(3+) ion concentration for the prepared sample is 7.0 mol%, beyond which the concentration quenching begins. Bonding between Dy–O is covalent in nature as confirmed by bonding parameters and the Dexter theory revealed that the energy transfer among Dy(3+) ions is dipole–diploe interaction. CIE chromaticity coordinates, CCT and color purity confirms the formation of warm white light emitting phosphors. Lifetime analysis demonstrates the longer decay time in the phosphors. The Internal Quantum Yield (IQE) and brightness (B) for the optimised phosphor is calculated as 45.35% and 11.41% respectively, which makes it a suitable phosphor for w-LED. The Royal Society of Chemistry 2023-04-13 /pmc/articles/PMC10099766/ /pubmed/37063722 http://dx.doi.org/10.1039/d3ra01260c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Poria, Kanishk
Lohan, Ravina
Bhatia, Sanjana
Kumar, Amit
Singh, Rajwinder
Deopa, Nisha
Punia, Rajesh
Shahi, Jangvir Singh
Rao, A. S.
Lumino-structural properties of Dy(3+) activated Na(3)Ba(2)LaNb(10)O(30) phosphors with enhanced internal quantum yield for w-LEDs
title Lumino-structural properties of Dy(3+) activated Na(3)Ba(2)LaNb(10)O(30) phosphors with enhanced internal quantum yield for w-LEDs
title_full Lumino-structural properties of Dy(3+) activated Na(3)Ba(2)LaNb(10)O(30) phosphors with enhanced internal quantum yield for w-LEDs
title_fullStr Lumino-structural properties of Dy(3+) activated Na(3)Ba(2)LaNb(10)O(30) phosphors with enhanced internal quantum yield for w-LEDs
title_full_unstemmed Lumino-structural properties of Dy(3+) activated Na(3)Ba(2)LaNb(10)O(30) phosphors with enhanced internal quantum yield for w-LEDs
title_short Lumino-structural properties of Dy(3+) activated Na(3)Ba(2)LaNb(10)O(30) phosphors with enhanced internal quantum yield for w-LEDs
title_sort lumino-structural properties of dy(3+) activated na(3)ba(2)lanb(10)o(30) phosphors with enhanced internal quantum yield for w-leds
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10099766/
https://www.ncbi.nlm.nih.gov/pubmed/37063722
http://dx.doi.org/10.1039/d3ra01260c
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