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Enhancement of Optical Telecommunication Bands: Pr(3+)-Doped Halide Phosphate Glasses Display Broadband NIR Photoluminescence Emission

In the optical energy gap, visible and near-IR emission of halide phosphate glasses with a composition of 40P(2)O(5)-30ZnO-20LiCl-10BaF(2) in mol% doped with 3.5 × 10(4) ppm Pr(2)O(3), referred to as PZLBPr, were synthesized. The UV-VIS-NIR and spectroscopic properties of these glasses were also pre...

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Autores principales: Charfi, Bilel, Damak, Kamel, Maâlej, Ramzi, Alqahtani, Mohammed S., Hussein, Khalid I., Alshehri, Ali M., Hussain, Abdulrahman M., Burtan-Gwizdala, Bozena, Reben, Manuela, Yousef, El Sayed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9572966/
https://www.ncbi.nlm.nih.gov/pubmed/36233860
http://dx.doi.org/10.3390/ma15196518
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author Charfi, Bilel
Damak, Kamel
Maâlej, Ramzi
Alqahtani, Mohammed S.
Hussein, Khalid I.
Alshehri, Ali M.
Hussain, Abdulrahman M.
Burtan-Gwizdala, Bozena
Reben, Manuela
Yousef, El Sayed
author_facet Charfi, Bilel
Damak, Kamel
Maâlej, Ramzi
Alqahtani, Mohammed S.
Hussein, Khalid I.
Alshehri, Ali M.
Hussain, Abdulrahman M.
Burtan-Gwizdala, Bozena
Reben, Manuela
Yousef, El Sayed
author_sort Charfi, Bilel
collection PubMed
description In the optical energy gap, visible and near-IR emission of halide phosphate glasses with a composition of 40P(2)O(5)-30ZnO-20LiCl-10BaF(2) in mol% doped with 3.5 × 10(4) ppm Pr(2)O(3), referred to as PZLBPr, were synthesized. The UV-VIS-NIR and spectroscopic properties of these glasses were also predicted. The current glasses had broadband emission photoluminescence covering a wavelength range of 1250 to 1700 nm when excited at 455 nm. These bands for near-infrared emission luminescence relate to the transitions (1)G(4) → (3)H(5), (1)D(2) → (1)G(4), and (3)H(4) → (3)F(3), (3)F(4) in the optical telecommunication window. The significant PL emission wideband was caused by the radiative transition from Pr(3+): (1)D(2) to (1)G(4). At 445 nm excitation, these glasses exhibited emission bands that corresponded to blue/reddish orange spectral ranges in visible ranges. The prepared glass has a high lasing quality factor (Ω(4)/Ω(6) = 0.9), high optical energy (4.72 eV), and quantum efficiency = 87.3% with FWHM = 156 nm of transition emission from the (1)D(2) → (1)G(4) level. As a result, broadband near infrared optical amplifiers can be fabricated from the prepared glasses.
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spelling pubmed-95729662022-10-17 Enhancement of Optical Telecommunication Bands: Pr(3+)-Doped Halide Phosphate Glasses Display Broadband NIR Photoluminescence Emission Charfi, Bilel Damak, Kamel Maâlej, Ramzi Alqahtani, Mohammed S. Hussein, Khalid I. Alshehri, Ali M. Hussain, Abdulrahman M. Burtan-Gwizdala, Bozena Reben, Manuela Yousef, El Sayed Materials (Basel) Article In the optical energy gap, visible and near-IR emission of halide phosphate glasses with a composition of 40P(2)O(5)-30ZnO-20LiCl-10BaF(2) in mol% doped with 3.5 × 10(4) ppm Pr(2)O(3), referred to as PZLBPr, were synthesized. The UV-VIS-NIR and spectroscopic properties of these glasses were also predicted. The current glasses had broadband emission photoluminescence covering a wavelength range of 1250 to 1700 nm when excited at 455 nm. These bands for near-infrared emission luminescence relate to the transitions (1)G(4) → (3)H(5), (1)D(2) → (1)G(4), and (3)H(4) → (3)F(3), (3)F(4) in the optical telecommunication window. The significant PL emission wideband was caused by the radiative transition from Pr(3+): (1)D(2) to (1)G(4). At 445 nm excitation, these glasses exhibited emission bands that corresponded to blue/reddish orange spectral ranges in visible ranges. The prepared glass has a high lasing quality factor (Ω(4)/Ω(6) = 0.9), high optical energy (4.72 eV), and quantum efficiency = 87.3% with FWHM = 156 nm of transition emission from the (1)D(2) → (1)G(4) level. As a result, broadband near infrared optical amplifiers can be fabricated from the prepared glasses. MDPI 2022-09-20 /pmc/articles/PMC9572966/ /pubmed/36233860 http://dx.doi.org/10.3390/ma15196518 Text en © 2022 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
Charfi, Bilel
Damak, Kamel
Maâlej, Ramzi
Alqahtani, Mohammed S.
Hussein, Khalid I.
Alshehri, Ali M.
Hussain, Abdulrahman M.
Burtan-Gwizdala, Bozena
Reben, Manuela
Yousef, El Sayed
Enhancement of Optical Telecommunication Bands: Pr(3+)-Doped Halide Phosphate Glasses Display Broadband NIR Photoluminescence Emission
title Enhancement of Optical Telecommunication Bands: Pr(3+)-Doped Halide Phosphate Glasses Display Broadband NIR Photoluminescence Emission
title_full Enhancement of Optical Telecommunication Bands: Pr(3+)-Doped Halide Phosphate Glasses Display Broadband NIR Photoluminescence Emission
title_fullStr Enhancement of Optical Telecommunication Bands: Pr(3+)-Doped Halide Phosphate Glasses Display Broadband NIR Photoluminescence Emission
title_full_unstemmed Enhancement of Optical Telecommunication Bands: Pr(3+)-Doped Halide Phosphate Glasses Display Broadband NIR Photoluminescence Emission
title_short Enhancement of Optical Telecommunication Bands: Pr(3+)-Doped Halide Phosphate Glasses Display Broadband NIR Photoluminescence Emission
title_sort enhancement of optical telecommunication bands: pr(3+)-doped halide phosphate glasses display broadband nir photoluminescence emission
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9572966/
https://www.ncbi.nlm.nih.gov/pubmed/36233860
http://dx.doi.org/10.3390/ma15196518
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