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Enhanced and tunable white light emission from Ag nanoclusters and Eu(3+)-co-doped CaBAl glasses

Noble metal embedded glasses have been studied as promising candidates for a variety of technological applications, mainly due to their ability to enhance rare earth luminescence properties. In this work, Ag:Eu-co-doped calcium boroaluminate glasses were prepared and submitted to further heat treatm...

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Autores principales: Sandrini, Marcelo, Muniz, Robson Ferrari, Zanuto, Vitor Santaella, Pedrochi, Franciana, Guyot, Yannick, Bento, Antonio Carlos, Baesso, Mauro Luciano, Steimacher, Alysson, Neto, Antonio Medina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9087325/
https://www.ncbi.nlm.nih.gov/pubmed/35547081
http://dx.doi.org/10.1039/c8ra07114d
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author Sandrini, Marcelo
Muniz, Robson Ferrari
Zanuto, Vitor Santaella
Pedrochi, Franciana
Guyot, Yannick
Bento, Antonio Carlos
Baesso, Mauro Luciano
Steimacher, Alysson
Neto, Antonio Medina
author_facet Sandrini, Marcelo
Muniz, Robson Ferrari
Zanuto, Vitor Santaella
Pedrochi, Franciana
Guyot, Yannick
Bento, Antonio Carlos
Baesso, Mauro Luciano
Steimacher, Alysson
Neto, Antonio Medina
author_sort Sandrini, Marcelo
collection PubMed
description Noble metal embedded glasses have been studied as promising candidates for a variety of technological applications, mainly due to their ability to enhance rare earth luminescence properties. In this work, Ag:Eu-co-doped calcium boroaluminate glasses were prepared and submitted to further heat treatment to form different Ag species. The optical and luminescence properties were investigated in terms of heat treatment times. Absorption spectra showed a successful Eu and Ag ion incorporation in the host, as well as Ag nanoparticle precipitation induced by heat treatment. Upon UV-light excitation, the co-doped glasses exhibited an intense wide emission band centered at about 500 nm, attributed to molecule-like silver species, which combined with the Eu(3+) characteristic emission reaches a white light resultant emission. A new excitation band for Eu(3+) at 335 nm and a silver luminescence lifetime decrease suggest an energy transfer process from molecule-like Ag to Eu(3+) as being responsible for the enhanced PL properties in these glasses. An appropriate combination of a violet LED with the sample emission provides a route to achieve the ideal white light CIE color parameters. The relevant quality color results qualify these glasses as phosphors with high potential for white light emitting devices.
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spelling pubmed-90873252022-05-10 Enhanced and tunable white light emission from Ag nanoclusters and Eu(3+)-co-doped CaBAl glasses Sandrini, Marcelo Muniz, Robson Ferrari Zanuto, Vitor Santaella Pedrochi, Franciana Guyot, Yannick Bento, Antonio Carlos Baesso, Mauro Luciano Steimacher, Alysson Neto, Antonio Medina RSC Adv Chemistry Noble metal embedded glasses have been studied as promising candidates for a variety of technological applications, mainly due to their ability to enhance rare earth luminescence properties. In this work, Ag:Eu-co-doped calcium boroaluminate glasses were prepared and submitted to further heat treatment to form different Ag species. The optical and luminescence properties were investigated in terms of heat treatment times. Absorption spectra showed a successful Eu and Ag ion incorporation in the host, as well as Ag nanoparticle precipitation induced by heat treatment. Upon UV-light excitation, the co-doped glasses exhibited an intense wide emission band centered at about 500 nm, attributed to molecule-like silver species, which combined with the Eu(3+) characteristic emission reaches a white light resultant emission. A new excitation band for Eu(3+) at 335 nm and a silver luminescence lifetime decrease suggest an energy transfer process from molecule-like Ag to Eu(3+) as being responsible for the enhanced PL properties in these glasses. An appropriate combination of a violet LED with the sample emission provides a route to achieve the ideal white light CIE color parameters. The relevant quality color results qualify these glasses as phosphors with high potential for white light emitting devices. The Royal Society of Chemistry 2018-10-15 /pmc/articles/PMC9087325/ /pubmed/35547081 http://dx.doi.org/10.1039/c8ra07114d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Sandrini, Marcelo
Muniz, Robson Ferrari
Zanuto, Vitor Santaella
Pedrochi, Franciana
Guyot, Yannick
Bento, Antonio Carlos
Baesso, Mauro Luciano
Steimacher, Alysson
Neto, Antonio Medina
Enhanced and tunable white light emission from Ag nanoclusters and Eu(3+)-co-doped CaBAl glasses
title Enhanced and tunable white light emission from Ag nanoclusters and Eu(3+)-co-doped CaBAl glasses
title_full Enhanced and tunable white light emission from Ag nanoclusters and Eu(3+)-co-doped CaBAl glasses
title_fullStr Enhanced and tunable white light emission from Ag nanoclusters and Eu(3+)-co-doped CaBAl glasses
title_full_unstemmed Enhanced and tunable white light emission from Ag nanoclusters and Eu(3+)-co-doped CaBAl glasses
title_short Enhanced and tunable white light emission from Ag nanoclusters and Eu(3+)-co-doped CaBAl glasses
title_sort enhanced and tunable white light emission from ag nanoclusters and eu(3+)-co-doped cabal glasses
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9087325/
https://www.ncbi.nlm.nih.gov/pubmed/35547081
http://dx.doi.org/10.1039/c8ra07114d
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