Cargando…

Effect of Ceramic Formation on the Emission of Eu(3+) and Nd(3+) Ions in Double Perovskites

Herein, the structure, morphology, as well as optical properties of the powder and ceramic samples of Ba(2)MgWO(6) are presented. Powder samples were obtained by high temperature solid-state reaction, while, for the ceramics, the SPS technique under 50-MPa pressure was applied. The morphology of the...

Descripción completa

Detalles Bibliográficos
Autores principales: Miniajluk-Gaweł, Natalia, Bondzior, Bartosz, Lemański, Karol, Vu, Thi Hong Quan, Stefańska, Dagmara, Boulesteix, Remy, Dereń, Przemysław Jacek
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8538543/
https://www.ncbi.nlm.nih.gov/pubmed/34683588
http://dx.doi.org/10.3390/ma14205996
_version_ 1784588531292700672
author Miniajluk-Gaweł, Natalia
Bondzior, Bartosz
Lemański, Karol
Vu, Thi Hong Quan
Stefańska, Dagmara
Boulesteix, Remy
Dereń, Przemysław Jacek
author_facet Miniajluk-Gaweł, Natalia
Bondzior, Bartosz
Lemański, Karol
Vu, Thi Hong Quan
Stefańska, Dagmara
Boulesteix, Remy
Dereń, Przemysław Jacek
author_sort Miniajluk-Gaweł, Natalia
collection PubMed
description Herein, the structure, morphology, as well as optical properties of the powder and ceramic samples of Ba(2)MgWO(6) are presented. Powder samples were obtained by high temperature solid-state reaction, while, for the ceramics, the SPS technique under 50-MPa pressure was applied. The morphology of the investigated samples showed some agglomeration and grains with a submicron size of 490–492 µm. The theoretical density and relative density of ceramics were calculated using the Archimedes method. The influence of sample preparation on the position, shape, and character of the host, as well as dopants emission was investigated. Sample sintering enhances regular emission of WO(6) groups causing a blue shift of Ba(2)MgWO(6) emission. Nonetheless, under X-ray excitation, only the green emission of inversion WO(6) group was detected. For the ceramic doped with Eu(3+) ions, the emission of both host and dopant was detected. However, for the powder efficient host to activator energy, the transfer process occurred, and only the magnetic dipole emission of Eu(3+) was detected. The intensity of Nd(3+) ions of Ba(2)MgWO(6) powder sample is five times higher than for the ceramic. The sintering process reduces inversion defects and creates a highly symmetrical site of neodymium ions. The emission of Ba(2)MgWO(6):Nd(3+) consists of transitions from the (4)F(3/2) excited level to the (4)I(J) multiplet states with the dominance of the (4)F(3/2)→(4)I(11/2) one. The spectroscopic quality parameter and branching ratio of Nd(3+) emission are presented.
format Online
Article
Text
id pubmed-8538543
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-85385432021-10-24 Effect of Ceramic Formation on the Emission of Eu(3+) and Nd(3+) Ions in Double Perovskites Miniajluk-Gaweł, Natalia Bondzior, Bartosz Lemański, Karol Vu, Thi Hong Quan Stefańska, Dagmara Boulesteix, Remy Dereń, Przemysław Jacek Materials (Basel) Article Herein, the structure, morphology, as well as optical properties of the powder and ceramic samples of Ba(2)MgWO(6) are presented. Powder samples were obtained by high temperature solid-state reaction, while, for the ceramics, the SPS technique under 50-MPa pressure was applied. The morphology of the investigated samples showed some agglomeration and grains with a submicron size of 490–492 µm. The theoretical density and relative density of ceramics were calculated using the Archimedes method. The influence of sample preparation on the position, shape, and character of the host, as well as dopants emission was investigated. Sample sintering enhances regular emission of WO(6) groups causing a blue shift of Ba(2)MgWO(6) emission. Nonetheless, under X-ray excitation, only the green emission of inversion WO(6) group was detected. For the ceramic doped with Eu(3+) ions, the emission of both host and dopant was detected. However, for the powder efficient host to activator energy, the transfer process occurred, and only the magnetic dipole emission of Eu(3+) was detected. The intensity of Nd(3+) ions of Ba(2)MgWO(6) powder sample is five times higher than for the ceramic. The sintering process reduces inversion defects and creates a highly symmetrical site of neodymium ions. The emission of Ba(2)MgWO(6):Nd(3+) consists of transitions from the (4)F(3/2) excited level to the (4)I(J) multiplet states with the dominance of the (4)F(3/2)→(4)I(11/2) one. The spectroscopic quality parameter and branching ratio of Nd(3+) emission are presented. MDPI 2021-10-12 /pmc/articles/PMC8538543/ /pubmed/34683588 http://dx.doi.org/10.3390/ma14205996 Text en © 2021 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
Miniajluk-Gaweł, Natalia
Bondzior, Bartosz
Lemański, Karol
Vu, Thi Hong Quan
Stefańska, Dagmara
Boulesteix, Remy
Dereń, Przemysław Jacek
Effect of Ceramic Formation on the Emission of Eu(3+) and Nd(3+) Ions in Double Perovskites
title Effect of Ceramic Formation on the Emission of Eu(3+) and Nd(3+) Ions in Double Perovskites
title_full Effect of Ceramic Formation on the Emission of Eu(3+) and Nd(3+) Ions in Double Perovskites
title_fullStr Effect of Ceramic Formation on the Emission of Eu(3+) and Nd(3+) Ions in Double Perovskites
title_full_unstemmed Effect of Ceramic Formation on the Emission of Eu(3+) and Nd(3+) Ions in Double Perovskites
title_short Effect of Ceramic Formation on the Emission of Eu(3+) and Nd(3+) Ions in Double Perovskites
title_sort effect of ceramic formation on the emission of eu(3+) and nd(3+) ions in double perovskites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8538543/
https://www.ncbi.nlm.nih.gov/pubmed/34683588
http://dx.doi.org/10.3390/ma14205996
work_keys_str_mv AT miniajlukgawełnatalia effectofceramicformationontheemissionofeu3andnd3ionsindoubleperovskites
AT bondziorbartosz effectofceramicformationontheemissionofeu3andnd3ionsindoubleperovskites
AT lemanskikarol effectofceramicformationontheemissionofeu3andnd3ionsindoubleperovskites
AT vuthihongquan effectofceramicformationontheemissionofeu3andnd3ionsindoubleperovskites
AT stefanskadagmara effectofceramicformationontheemissionofeu3andnd3ionsindoubleperovskites
AT boulesteixremy effectofceramicformationontheemissionofeu3andnd3ionsindoubleperovskites
AT derenprzemysławjacek effectofceramicformationontheemissionofeu3andnd3ionsindoubleperovskites