Effect of co-doped sno2 nanoparticles on photoluminescence of cu-doped potassium lithium borate glass

The co-doped SnO2 nanoparticles of lithium potassium borate doped with Cu glass were prepared using the chemical quenching technique. The X-ray diffraction analysis revealed the amorphous nature of the sample. The morphology was determined using high resolution scanning electron microscopy (FE-SEM)....

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Main Authors: Namma, Haydar Aboud, Wagiran, Husin, Hussin, Rosli, Ariwahjoedi, Bambang, Hossain, Imam, Abbas, Saad Saber, Aziz, Madzlan
Format: Article
Published: 2012
Subjects:
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author Namma, Haydar Aboud
Wagiran, Husin
Hussin, Rosli
Ariwahjoedi, Bambang
Hossain, Imam
Abbas, Saad Saber
Aziz, Madzlan
author_facet Namma, Haydar Aboud
Wagiran, Husin
Hussin, Rosli
Ariwahjoedi, Bambang
Hossain, Imam
Abbas, Saad Saber
Aziz, Madzlan
author_sort Namma, Haydar Aboud
collection ePrints
description The co-doped SnO2 nanoparticles of lithium potassium borate doped with Cu glass were prepared using the chemical quenching technique. The X-ray diffraction analysis revealed the amorphous nature of the sample. The morphology was determined using high resolution scanning electron microscopy (FE-SEM). The photoluminescence properties and energy band gaps of the glass were investigated. The changes in the energy band gap were due to the concentration of SnO2 nanoparticles and copper ions. An enhancement of almost three times was shown when SnO2 nanoparticles were added as co-dopants to 0.1 mol% of Cu and the peak shapes shifted from blue luminescence to blue and green luminescence.
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spelling utm.eprints-468472017-09-26T00:57:48Z http://eprints.utm.my/46847/ Effect of co-doped sno2 nanoparticles on photoluminescence of cu-doped potassium lithium borate glass Namma, Haydar Aboud Wagiran, Husin Hussin, Rosli Ariwahjoedi, Bambang Hossain, Imam Abbas, Saad Saber Aziz, Madzlan TL Motor vehicles. Aeronautics. Astronautics The co-doped SnO2 nanoparticles of lithium potassium borate doped with Cu glass were prepared using the chemical quenching technique. The X-ray diffraction analysis revealed the amorphous nature of the sample. The morphology was determined using high resolution scanning electron microscopy (FE-SEM). The photoluminescence properties and energy band gaps of the glass were investigated. The changes in the energy band gap were due to the concentration of SnO2 nanoparticles and copper ions. An enhancement of almost three times was shown when SnO2 nanoparticles were added as co-dopants to 0.1 mol% of Cu and the peak shapes shifted from blue luminescence to blue and green luminescence. 2012 Article PeerReviewed Namma, Haydar Aboud and Wagiran, Husin and Hussin, Rosli and Ariwahjoedi, Bambang and Hossain, Imam and Abbas, Saad Saber and Aziz, Madzlan (2012) Effect of co-doped sno2 nanoparticles on photoluminescence of cu-doped potassium lithium borate glass. AIP Conference Proceedings, 1482 . pp. 664-666. ISSN 0094-243X http://dx.doi.org/10.1016/j.matlet.2012.06.033
spellingShingle TL Motor vehicles. Aeronautics. Astronautics
Namma, Haydar Aboud
Wagiran, Husin
Hussin, Rosli
Ariwahjoedi, Bambang
Hossain, Imam
Abbas, Saad Saber
Aziz, Madzlan
Effect of co-doped sno2 nanoparticles on photoluminescence of cu-doped potassium lithium borate glass
title Effect of co-doped sno2 nanoparticles on photoluminescence of cu-doped potassium lithium borate glass
title_full Effect of co-doped sno2 nanoparticles on photoluminescence of cu-doped potassium lithium borate glass
title_fullStr Effect of co-doped sno2 nanoparticles on photoluminescence of cu-doped potassium lithium borate glass
title_full_unstemmed Effect of co-doped sno2 nanoparticles on photoluminescence of cu-doped potassium lithium borate glass
title_short Effect of co-doped sno2 nanoparticles on photoluminescence of cu-doped potassium lithium borate glass
title_sort effect of co doped sno2 nanoparticles on photoluminescence of cu doped potassium lithium borate glass
topic TL Motor vehicles. Aeronautics. Astronautics
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