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Novel Sol-Gel Route to Prepare Eu(3+)-Doped 80SiO(2)-20NaGdF(4) Oxyfluoride Glass-Ceramic for Photonic Device Applications

Oxyfluoride glass-ceramics (OxGCs) with the molar composition 80SiO(2)-20(1.5Eu(3+): NaGdF(4)) were prepared with sol-gel following the “pre-crystallised nanoparticles route” with promising optical results. The preparation of 1.5 mol % Eu(3+)-doped NaGdF(4) nanoparticles, named 1.5Eu(3+): NaGdF(4),...

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Autores principales: Cruz, María Eugenia, Ngoc Lam Tran, Thi, Chiasera, Alessandro, Durán, Alicia, Fernandez, Joaquín, Balda, Rolindes, Castro, Yolanda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10004841/
https://www.ncbi.nlm.nih.gov/pubmed/36903818
http://dx.doi.org/10.3390/nano13050940
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author Cruz, María Eugenia
Ngoc Lam Tran, Thi
Chiasera, Alessandro
Durán, Alicia
Fernandez, Joaquín
Balda, Rolindes
Castro, Yolanda
author_facet Cruz, María Eugenia
Ngoc Lam Tran, Thi
Chiasera, Alessandro
Durán, Alicia
Fernandez, Joaquín
Balda, Rolindes
Castro, Yolanda
author_sort Cruz, María Eugenia
collection PubMed
description Oxyfluoride glass-ceramics (OxGCs) with the molar composition 80SiO(2)-20(1.5Eu(3+): NaGdF(4)) were prepared with sol-gel following the “pre-crystallised nanoparticles route” with promising optical results. The preparation of 1.5 mol % Eu(3+)-doped NaGdF(4) nanoparticles, named 1.5Eu(3+): NaGdF(4), was optimised and characterised using XRD, FTIR and HRTEM. The structural characterisation of 80SiO(2)-20(1.5Eu(3+): NaGdF(4)) OxGCs prepared from these nanoparticles’ suspension was performed by XRD and FTIR revealing the presence of hexagonal and orthorhombic NaGdF(4) crystalline phases. The optical properties of both nanoparticles’ phases and the related OxGCs were studied by measuring the emission and excitation spectra together with the lifetimes of the (5)D(0) state. The emission spectra obtained by exciting the Eu(3+)-O(2−) charge transfer band showed similar features in both cases corresponding the higher emission intensity to the (5)D(0)→(7)F(2) transition that indicates a non-centrosymmetric site for Eu(3+) ions. Moreover, time-resolved fluorescence line-narrowed emission spectra were performed at a low temperature in OxGCs to obtain information about the site symmetry of Eu(3+) in this matrix. The results show that this processing method is promising for preparing transparent OxGCs coatings for photonic applications.
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spelling pubmed-100048412023-03-11 Novel Sol-Gel Route to Prepare Eu(3+)-Doped 80SiO(2)-20NaGdF(4) Oxyfluoride Glass-Ceramic for Photonic Device Applications Cruz, María Eugenia Ngoc Lam Tran, Thi Chiasera, Alessandro Durán, Alicia Fernandez, Joaquín Balda, Rolindes Castro, Yolanda Nanomaterials (Basel) Article Oxyfluoride glass-ceramics (OxGCs) with the molar composition 80SiO(2)-20(1.5Eu(3+): NaGdF(4)) were prepared with sol-gel following the “pre-crystallised nanoparticles route” with promising optical results. The preparation of 1.5 mol % Eu(3+)-doped NaGdF(4) nanoparticles, named 1.5Eu(3+): NaGdF(4), was optimised and characterised using XRD, FTIR and HRTEM. The structural characterisation of 80SiO(2)-20(1.5Eu(3+): NaGdF(4)) OxGCs prepared from these nanoparticles’ suspension was performed by XRD and FTIR revealing the presence of hexagonal and orthorhombic NaGdF(4) crystalline phases. The optical properties of both nanoparticles’ phases and the related OxGCs were studied by measuring the emission and excitation spectra together with the lifetimes of the (5)D(0) state. The emission spectra obtained by exciting the Eu(3+)-O(2−) charge transfer band showed similar features in both cases corresponding the higher emission intensity to the (5)D(0)→(7)F(2) transition that indicates a non-centrosymmetric site for Eu(3+) ions. Moreover, time-resolved fluorescence line-narrowed emission spectra were performed at a low temperature in OxGCs to obtain information about the site symmetry of Eu(3+) in this matrix. The results show that this processing method is promising for preparing transparent OxGCs coatings for photonic applications. MDPI 2023-03-05 /pmc/articles/PMC10004841/ /pubmed/36903818 http://dx.doi.org/10.3390/nano13050940 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
Cruz, María Eugenia
Ngoc Lam Tran, Thi
Chiasera, Alessandro
Durán, Alicia
Fernandez, Joaquín
Balda, Rolindes
Castro, Yolanda
Novel Sol-Gel Route to Prepare Eu(3+)-Doped 80SiO(2)-20NaGdF(4) Oxyfluoride Glass-Ceramic for Photonic Device Applications
title Novel Sol-Gel Route to Prepare Eu(3+)-Doped 80SiO(2)-20NaGdF(4) Oxyfluoride Glass-Ceramic for Photonic Device Applications
title_full Novel Sol-Gel Route to Prepare Eu(3+)-Doped 80SiO(2)-20NaGdF(4) Oxyfluoride Glass-Ceramic for Photonic Device Applications
title_fullStr Novel Sol-Gel Route to Prepare Eu(3+)-Doped 80SiO(2)-20NaGdF(4) Oxyfluoride Glass-Ceramic for Photonic Device Applications
title_full_unstemmed Novel Sol-Gel Route to Prepare Eu(3+)-Doped 80SiO(2)-20NaGdF(4) Oxyfluoride Glass-Ceramic for Photonic Device Applications
title_short Novel Sol-Gel Route to Prepare Eu(3+)-Doped 80SiO(2)-20NaGdF(4) Oxyfluoride Glass-Ceramic for Photonic Device Applications
title_sort novel sol-gel route to prepare eu(3+)-doped 80sio(2)-20nagdf(4) oxyfluoride glass-ceramic for photonic device applications
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10004841/
https://www.ncbi.nlm.nih.gov/pubmed/36903818
http://dx.doi.org/10.3390/nano13050940
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