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Synthesis of Cs(3)MnBr(5) Green Phosphors Using an Eco-Friendly Evaporative Crystallization Process

[Image: see text] Green (G) and red (R) light-emitting materials, such as quantum dots, perovskite nanocrystals, and inorganic phosphor powders, owing to their excellent optical characteristics, have attracted researchers’ attention as color-conversion materials for lighting and display applications...

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Autores principales: Park, Sangwook, Ko, Minji, Kim, Hyeng Jin, Lee, Keyong Nam, Do, Young Rag
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9330271/
https://www.ncbi.nlm.nih.gov/pubmed/35910135
http://dx.doi.org/10.1021/acsomega.2c00943
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author Park, Sangwook
Ko, Minji
Kim, Hyeng Jin
Lee, Keyong Nam
Do, Young Rag
author_facet Park, Sangwook
Ko, Minji
Kim, Hyeng Jin
Lee, Keyong Nam
Do, Young Rag
author_sort Park, Sangwook
collection PubMed
description [Image: see text] Green (G) and red (R) light-emitting materials, such as quantum dots, perovskite nanocrystals, and inorganic phosphor powders, owing to their excellent optical characteristics, have attracted researchers’ attention as color-conversion materials for lighting and display applications. However, these materials contain environmentally harmful elements, such as Pb or Cd, and/or they are synthesized using environmentally harmful synthetic approaches and conditions, involving the use of organic solvents, high pressure, high temperature, harsh atmosphere, and long reaction time. In this study, as an eco-friendly synthetic approach to synthesize lead-free Cs(3)MnBr(5) G powder phosphor, we suggest an evaporative crystallization process of aqueous reactant solution. This synthetic process does not use toxic elements or solvents and the crystallization process utilizes only low reaction temperature and short reaction time under air atmosphere conditions. We successfully synthesized Cs(3)MnBr(5) green powder phosphor, with excellent optical properties, by evaporative heating of a 200 nm syringe-filtered solution at 150 °C for 2 h. The synthesized Cs(3)MnBr(5) phosphors have a photoluminescence quantum yield of 66.3%, a peak wavelength of 520 nm, a narrow bandwidth of 38 nm, and a photoluminescence decay time of 0.34 ms under blue excitation. This phosphor is expected to be a useful alternative G-emitting material that can compete with commercial green quantum dots, perovskite nanocrystals, or inorganic phosphors.
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spelling pubmed-93302712022-07-29 Synthesis of Cs(3)MnBr(5) Green Phosphors Using an Eco-Friendly Evaporative Crystallization Process Park, Sangwook Ko, Minji Kim, Hyeng Jin Lee, Keyong Nam Do, Young Rag ACS Omega [Image: see text] Green (G) and red (R) light-emitting materials, such as quantum dots, perovskite nanocrystals, and inorganic phosphor powders, owing to their excellent optical characteristics, have attracted researchers’ attention as color-conversion materials for lighting and display applications. However, these materials contain environmentally harmful elements, such as Pb or Cd, and/or they are synthesized using environmentally harmful synthetic approaches and conditions, involving the use of organic solvents, high pressure, high temperature, harsh atmosphere, and long reaction time. In this study, as an eco-friendly synthetic approach to synthesize lead-free Cs(3)MnBr(5) G powder phosphor, we suggest an evaporative crystallization process of aqueous reactant solution. This synthetic process does not use toxic elements or solvents and the crystallization process utilizes only low reaction temperature and short reaction time under air atmosphere conditions. We successfully synthesized Cs(3)MnBr(5) green powder phosphor, with excellent optical properties, by evaporative heating of a 200 nm syringe-filtered solution at 150 °C for 2 h. The synthesized Cs(3)MnBr(5) phosphors have a photoluminescence quantum yield of 66.3%, a peak wavelength of 520 nm, a narrow bandwidth of 38 nm, and a photoluminescence decay time of 0.34 ms under blue excitation. This phosphor is expected to be a useful alternative G-emitting material that can compete with commercial green quantum dots, perovskite nanocrystals, or inorganic phosphors. American Chemical Society 2022-07-12 /pmc/articles/PMC9330271/ /pubmed/35910135 http://dx.doi.org/10.1021/acsomega.2c00943 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Park, Sangwook
Ko, Minji
Kim, Hyeng Jin
Lee, Keyong Nam
Do, Young Rag
Synthesis of Cs(3)MnBr(5) Green Phosphors Using an Eco-Friendly Evaporative Crystallization Process
title Synthesis of Cs(3)MnBr(5) Green Phosphors Using an Eco-Friendly Evaporative Crystallization Process
title_full Synthesis of Cs(3)MnBr(5) Green Phosphors Using an Eco-Friendly Evaporative Crystallization Process
title_fullStr Synthesis of Cs(3)MnBr(5) Green Phosphors Using an Eco-Friendly Evaporative Crystallization Process
title_full_unstemmed Synthesis of Cs(3)MnBr(5) Green Phosphors Using an Eco-Friendly Evaporative Crystallization Process
title_short Synthesis of Cs(3)MnBr(5) Green Phosphors Using an Eco-Friendly Evaporative Crystallization Process
title_sort synthesis of cs(3)mnbr(5) green phosphors using an eco-friendly evaporative crystallization process
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9330271/
https://www.ncbi.nlm.nih.gov/pubmed/35910135
http://dx.doi.org/10.1021/acsomega.2c00943
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