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Study on Local-Structure Symmetrization of K(2)XF(6) Crystals Doped with Mn(4+) Ions by First-Principles Calculations
The crystals of Mn(4+)-activated fluorides, such as those of the hexafluorometallate family, are widely known for their luminescence properties. The most commonly reported red phosphors are A(2)XF(6): Mn(4+) and BXF(6): Mn(4+) fluorides, where A represents alkali metal ions such as Li, Na, K, Rb, Cs...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254480/ https://www.ncbi.nlm.nih.gov/pubmed/37297190 http://dx.doi.org/10.3390/ma16114046 |
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author | Novita, Mega Ristanto, Sigit Saptaningrum, Ernawati Supriyadi, Slamet Marlina, Dian Rondonuwu, Ferdy Semuel Chauhan, Alok Singh Walker, Benjamin Ogasawara, Kazuyoshi Piasecki, Michal Brik, Mikhail G. |
author_facet | Novita, Mega Ristanto, Sigit Saptaningrum, Ernawati Supriyadi, Slamet Marlina, Dian Rondonuwu, Ferdy Semuel Chauhan, Alok Singh Walker, Benjamin Ogasawara, Kazuyoshi Piasecki, Michal Brik, Mikhail G. |
author_sort | Novita, Mega |
collection | PubMed |
description | The crystals of Mn(4+)-activated fluorides, such as those of the hexafluorometallate family, are widely known for their luminescence properties. The most commonly reported red phosphors are A(2)XF(6): Mn(4+) and BXF(6): Mn(4+) fluorides, where A represents alkali metal ions such as Li, Na, K, Rb, Cs; X=Ti, Si, Ge, Zr, Sn, B = Ba and Zn; and X = Si, Ge, Zr, Sn, and Ti. Their performance is heavily influenced by the local structure around dopant ions. Many well-known research organizations have focused their attention on this area in recent years. However, there has been no report on the effect of local structural symmetrization on the luminescence properties of red phosphors. The purpose of this research was to investigate the effect of local structural symmetrization on the polytypes of K(2)XF(6) crystals, namely O(h)-K(2)MnF(6), C(3v)-K(2)MnF(6), O(h)-K(2)SiF(6), C(3v)-K(2)SiF(6), D(3d)-K(2)GeF(6), and C(3v)-K(2)GeF(6). These crystal formations yielded seven-atom model clusters. Discrete Variational Xα (DV-Xα) and Discrete Variational Multi Electron (DVME) were the first principles methods used to compute the Molecular orbital energies, multiplet energy levels, and Coulomb integrals of these compounds. The multiplet energies of Mn(4+) doped K(2)XF(6) crystals were qualitatively reproduced by taking lattice relaxation, Configuration Dependent Correction (CDC), and Correlation Correction (CC) into account. The (4)A(2g)→(4)T(2g) ((4)F) and (4)A(2g)→(4)T(1g) ((4)F) energies increased when the Mn-F bond length decreased, but the (2)E(g) → (4)A(2g) energy decreased. Because of the low symmetry, the magnitude of the Coulomb integral became smaller. As a result, the decreasing trend in the R-line energy could be attributed to a decreased electron–electron repulsion. |
format | Online Article Text |
id | pubmed-10254480 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-102544802023-06-10 Study on Local-Structure Symmetrization of K(2)XF(6) Crystals Doped with Mn(4+) Ions by First-Principles Calculations Novita, Mega Ristanto, Sigit Saptaningrum, Ernawati Supriyadi, Slamet Marlina, Dian Rondonuwu, Ferdy Semuel Chauhan, Alok Singh Walker, Benjamin Ogasawara, Kazuyoshi Piasecki, Michal Brik, Mikhail G. Materials (Basel) Article The crystals of Mn(4+)-activated fluorides, such as those of the hexafluorometallate family, are widely known for their luminescence properties. The most commonly reported red phosphors are A(2)XF(6): Mn(4+) and BXF(6): Mn(4+) fluorides, where A represents alkali metal ions such as Li, Na, K, Rb, Cs; X=Ti, Si, Ge, Zr, Sn, B = Ba and Zn; and X = Si, Ge, Zr, Sn, and Ti. Their performance is heavily influenced by the local structure around dopant ions. Many well-known research organizations have focused their attention on this area in recent years. However, there has been no report on the effect of local structural symmetrization on the luminescence properties of red phosphors. The purpose of this research was to investigate the effect of local structural symmetrization on the polytypes of K(2)XF(6) crystals, namely O(h)-K(2)MnF(6), C(3v)-K(2)MnF(6), O(h)-K(2)SiF(6), C(3v)-K(2)SiF(6), D(3d)-K(2)GeF(6), and C(3v)-K(2)GeF(6). These crystal formations yielded seven-atom model clusters. Discrete Variational Xα (DV-Xα) and Discrete Variational Multi Electron (DVME) were the first principles methods used to compute the Molecular orbital energies, multiplet energy levels, and Coulomb integrals of these compounds. The multiplet energies of Mn(4+) doped K(2)XF(6) crystals were qualitatively reproduced by taking lattice relaxation, Configuration Dependent Correction (CDC), and Correlation Correction (CC) into account. The (4)A(2g)→(4)T(2g) ((4)F) and (4)A(2g)→(4)T(1g) ((4)F) energies increased when the Mn-F bond length decreased, but the (2)E(g) → (4)A(2g) energy decreased. Because of the low symmetry, the magnitude of the Coulomb integral became smaller. As a result, the decreasing trend in the R-line energy could be attributed to a decreased electron–electron repulsion. MDPI 2023-05-29 /pmc/articles/PMC10254480/ /pubmed/37297190 http://dx.doi.org/10.3390/ma16114046 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 Novita, Mega Ristanto, Sigit Saptaningrum, Ernawati Supriyadi, Slamet Marlina, Dian Rondonuwu, Ferdy Semuel Chauhan, Alok Singh Walker, Benjamin Ogasawara, Kazuyoshi Piasecki, Michal Brik, Mikhail G. Study on Local-Structure Symmetrization of K(2)XF(6) Crystals Doped with Mn(4+) Ions by First-Principles Calculations |
title | Study on Local-Structure Symmetrization of K(2)XF(6) Crystals Doped with Mn(4+) Ions by First-Principles Calculations |
title_full | Study on Local-Structure Symmetrization of K(2)XF(6) Crystals Doped with Mn(4+) Ions by First-Principles Calculations |
title_fullStr | Study on Local-Structure Symmetrization of K(2)XF(6) Crystals Doped with Mn(4+) Ions by First-Principles Calculations |
title_full_unstemmed | Study on Local-Structure Symmetrization of K(2)XF(6) Crystals Doped with Mn(4+) Ions by First-Principles Calculations |
title_short | Study on Local-Structure Symmetrization of K(2)XF(6) Crystals Doped with Mn(4+) Ions by First-Principles Calculations |
title_sort | study on local-structure symmetrization of k(2)xf(6) crystals doped with mn(4+) ions by first-principles calculations |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254480/ https://www.ncbi.nlm.nih.gov/pubmed/37297190 http://dx.doi.org/10.3390/ma16114046 |
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