Photoluminescence and photocatalytic properties of novel Bi2O3:Sm3+ nanophosphor

The current work involves studies of the synthesis, characterization and photoluminescence for Sm3+ (1-11 mol %) doped Bi2O3 nanophosphors (NPs) by a solution combustion method. The average particle size was determined using powder X-ray diffraction (PXRD) and found to be in the range of 13- 30 nm....

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Main Authors: Ashwini, S., Prashantha, S.C., Naik, Ramachandra, Naik, Yashwanth V., Nagabhushana, H., Narasimhamurthy, K.N.
Format: Article
Language:English
Published: Elsevier 2019
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Online Access:http://repository.vnu.edu.vn/handle/VNU_123/67898
https://doi.org/10.1016/j.jsamd.2019.09.001
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Institution: Vietnam National University, Hanoi
Language: English
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spelling oai:112.137.131.14:VNU_123-678982019-10-17T08:26:53Z Photoluminescence and photocatalytic properties of novel Bi2O3:Sm3+ nanophosphor Ashwini, S. Prashantha, S.C. Naik, Ramachandra Naik, Yashwanth V. Nagabhushana, H. Narasimhamurthy, K.N. Bi2O3:Sm3+ Photoluminescence Judd- Ofelt CIE and CCT The current work involves studies of the synthesis, characterization and photoluminescence for Sm3+ (1-11 mol %) doped Bi2O3 nanophosphors (NPs) by a solution combustion method. The average particle size was determined using powder X-ray diffraction (PXRD) and found to be in the range of 13- 30 nm. The Kubelka-Munk (K-M) function was used to assess the energy gap of Sm3+ doped Bi2O3 nanophosphors which was found to be 2.92- 2.96 eV. From the Emission spectra, the Judd–Ofelt parameters (Ω2 and Ω4), the transition probabilities (AT), the quantum efficiency (η), the luminescence lifetime (τr), the colour chromaticity coordinates (CIE) and the correlated colour temperature (CCT) values were estimated and discussed in detail. The CIE chromaticity co-ordinates were close to the NTSC (National Television Standard Committee) standard value of Orange emission. Using the Langmuir- Hinshelwood model and Acid Red-88, the photocatalytic activity results showed that Bi2O3:Sm3+ NPs are potential materials for the development of an efficient photocatalyst for environmental remediation. The obtained results prove that the Bi2O3:Sm3+ nanophosphors synthesised by this method can potentially be used for Solid State display and Photocatalyst 2019-10-17T08:26:53Z 2019-10-17T08:26:53Z 2019 Article Ashwini, S., et al. (2019). Photoluminescence and photocatalytic properties of novel Bi2O3:Sm3+ nanophosphor. Journal of Science: Advanced Materials and Devices 2468-2179 http://repository.vnu.edu.vn/handle/VNU_123/67898 https://doi.org/10.1016/j.jsamd.2019.09.001 en Journal of Science: Advanced Materials and Devices; application/pdf Elsevier
institution Vietnam National University, Hanoi
building VNU Library & Information Center
country Vietnam
collection VNU Digital Repository
language English
topic Bi2O3:Sm3+
Photoluminescence
Judd- Ofelt
CIE and CCT
spellingShingle Bi2O3:Sm3+
Photoluminescence
Judd- Ofelt
CIE and CCT
Ashwini, S.
Prashantha, S.C.
Naik, Ramachandra
Naik, Yashwanth V.
Nagabhushana, H.
Narasimhamurthy, K.N.
Photoluminescence and photocatalytic properties of novel Bi2O3:Sm3+ nanophosphor
description The current work involves studies of the synthesis, characterization and photoluminescence for Sm3+ (1-11 mol %) doped Bi2O3 nanophosphors (NPs) by a solution combustion method. The average particle size was determined using powder X-ray diffraction (PXRD) and found to be in the range of 13- 30 nm. The Kubelka-Munk (K-M) function was used to assess the energy gap of Sm3+ doped Bi2O3 nanophosphors which was found to be 2.92- 2.96 eV. From the Emission spectra, the Judd–Ofelt parameters (Ω2 and Ω4), the transition probabilities (AT), the quantum efficiency (η), the luminescence lifetime (τr), the colour chromaticity coordinates (CIE) and the correlated colour temperature (CCT) values were estimated and discussed in detail. The CIE chromaticity co-ordinates were close to the NTSC (National Television Standard Committee) standard value of Orange emission. Using the Langmuir- Hinshelwood model and Acid Red-88, the photocatalytic activity results showed that Bi2O3:Sm3+ NPs are potential materials for the development of an efficient photocatalyst for environmental remediation. The obtained results prove that the Bi2O3:Sm3+ nanophosphors synthesised by this method can potentially be used for Solid State display and Photocatalyst
format Article
author Ashwini, S.
Prashantha, S.C.
Naik, Ramachandra
Naik, Yashwanth V.
Nagabhushana, H.
Narasimhamurthy, K.N.
author_facet Ashwini, S.
Prashantha, S.C.
Naik, Ramachandra
Naik, Yashwanth V.
Nagabhushana, H.
Narasimhamurthy, K.N.
author_sort Ashwini, S.
title Photoluminescence and photocatalytic properties of novel Bi2O3:Sm3+ nanophosphor
title_short Photoluminescence and photocatalytic properties of novel Bi2O3:Sm3+ nanophosphor
title_full Photoluminescence and photocatalytic properties of novel Bi2O3:Sm3+ nanophosphor
title_fullStr Photoluminescence and photocatalytic properties of novel Bi2O3:Sm3+ nanophosphor
title_full_unstemmed Photoluminescence and photocatalytic properties of novel Bi2O3:Sm3+ nanophosphor
title_sort photoluminescence and photocatalytic properties of novel bi2o3:sm3+ nanophosphor
publisher Elsevier
publishDate 2019
url http://repository.vnu.edu.vn/handle/VNU_123/67898
https://doi.org/10.1016/j.jsamd.2019.09.001
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