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Photon avalanche assisted upconversion via customizing the green emission

The developed SnWO(4) phosphors incorporated with Ho(3+), Yb(3+) and Mn(4+) ions have been explored under 980 nm laser irradiation. The molar concentration of dopants has been optimized to 0.5 Ho(3+), 3.0 Yb(3+) and 5.0 Mn(4+) in SnWO(4) phosphors. The upconversion (UC) emission from the codoped SnW...

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Autores principales: Prasad, Manisha, Rai, Vineet Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10324025/
https://www.ncbi.nlm.nih.gov/pubmed/37425634
http://dx.doi.org/10.1039/d3ra02894a
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author Prasad, Manisha
Rai, Vineet Kumar
author_facet Prasad, Manisha
Rai, Vineet Kumar
author_sort Prasad, Manisha
collection PubMed
description The developed SnWO(4) phosphors incorporated with Ho(3+), Yb(3+) and Mn(4+) ions have been explored under 980 nm laser irradiation. The molar concentration of dopants has been optimized to 0.5 Ho(3+), 3.0 Yb(3+) and 5.0 Mn(4+) in SnWO(4) phosphors. The upconversion (UC) emission from the codoped SnWO(4) phosphors has been substantially amplified up to 13 times and described based on the energy transfer and charge compensation. On incorporating the Mn(4+) ions in the Ho(3+)/Yb(3+) codoped system the sharp green luminescence shifted to reddish broadband emission due to the photon avalanche mechanism. The processes accountable for the concentration quenching have been described based on critical distance. The interaction responsible for the concentration quenching in Yb(3+) sensitized Ho(3+) and Ho(3+)/Mn(4+):SnWO(4) phosphors is considered to be dipole-quadrupole and exchange interaction type, respectively. The activation energy 0.19 eV has been determined, and the phenomenon of thermal quenching is discussed using a configuration coordinate diagram.
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spelling pubmed-103240252023-07-07 Photon avalanche assisted upconversion via customizing the green emission Prasad, Manisha Rai, Vineet Kumar RSC Adv Chemistry The developed SnWO(4) phosphors incorporated with Ho(3+), Yb(3+) and Mn(4+) ions have been explored under 980 nm laser irradiation. The molar concentration of dopants has been optimized to 0.5 Ho(3+), 3.0 Yb(3+) and 5.0 Mn(4+) in SnWO(4) phosphors. The upconversion (UC) emission from the codoped SnWO(4) phosphors has been substantially amplified up to 13 times and described based on the energy transfer and charge compensation. On incorporating the Mn(4+) ions in the Ho(3+)/Yb(3+) codoped system the sharp green luminescence shifted to reddish broadband emission due to the photon avalanche mechanism. The processes accountable for the concentration quenching have been described based on critical distance. The interaction responsible for the concentration quenching in Yb(3+) sensitized Ho(3+) and Ho(3+)/Mn(4+):SnWO(4) phosphors is considered to be dipole-quadrupole and exchange interaction type, respectively. The activation energy 0.19 eV has been determined, and the phenomenon of thermal quenching is discussed using a configuration coordinate diagram. The Royal Society of Chemistry 2023-07-06 /pmc/articles/PMC10324025/ /pubmed/37425634 http://dx.doi.org/10.1039/d3ra02894a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Prasad, Manisha
Rai, Vineet Kumar
Photon avalanche assisted upconversion via customizing the green emission
title Photon avalanche assisted upconversion via customizing the green emission
title_full Photon avalanche assisted upconversion via customizing the green emission
title_fullStr Photon avalanche assisted upconversion via customizing the green emission
title_full_unstemmed Photon avalanche assisted upconversion via customizing the green emission
title_short Photon avalanche assisted upconversion via customizing the green emission
title_sort photon avalanche assisted upconversion via customizing the green emission
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10324025/
https://www.ncbi.nlm.nih.gov/pubmed/37425634
http://dx.doi.org/10.1039/d3ra02894a
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