Luminescence properties of Dy3+ and Sm3+: Potassium lithium borate glass
The present paper describes the spectral properties of Sm3+ (0.4 mol%) and Dy3+ (0.4 mol%) ions-doped 20Li2O-10K2O-70B2O3 glasses. X-ray diffraction method was use to confirm the amorphous phase of samples. The physical properties have been determined based on UV absorption spectra. The hypersensiti...
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my.utm.533412018-07-25T07:55:41Z http://eprints.utm.my/id/eprint/53341/ Luminescence properties of Dy3+ and Sm3+: Potassium lithium borate glass Aboud, Haydar Wagiran, Husin Hussin, Rosli Q Science The present paper describes the spectral properties of Sm3+ (0.4 mol%) and Dy3+ (0.4 mol%) ions-doped 20Li2O-10K2O-70B2O3 glasses. X-ray diffraction method was use to confirm the amorphous phase of samples. The physical properties have been determined based on UV absorption spectra. The hypersensitive transition of Dy3+ and Sm3+ is found due to transition of (6F11/2,6H9/2) and (6F7/2), respectively. The emission bands of Dy3+: glass has shown around 572 nm, 612 nm and 646 nm; these emissions are attributed to the transitions of 4F9/2 →6H15/2 (yellow), 4F9/2 - 6H13/2 (red) and 4F9/2 -6H11/2 (red). With regard to Sm3+: glass has three emission bands those have been generated from 4G5/2 → 6H5/2 (616 nm), 4G5/2 → 6H7/2 (660 nm) and 4G5/2 → 6H9/2 (719 nm) transitions. The current results promise several applications in optical fields such as UV-sensor, developing new color light sources and tunable visible lasers Penerbit UTM 2014 Article PeerReviewed Aboud, Haydar and Wagiran, Husin and Hussin, Rosli (2014) Luminescence properties of Dy3+ and Sm3+: Potassium lithium borate glass. Jurnal Teknologi (Sciences and Engineering), 68 (1). pp. 57-60. ISSN 2180-3722 http://dx.doi.org/10.11113/jt.v68.1657 DOI: 10.11113/jt.v68.1657 |
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Q Science Aboud, Haydar Wagiran, Husin Hussin, Rosli Luminescence properties of Dy3+ and Sm3+: Potassium lithium borate glass |
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The present paper describes the spectral properties of Sm3+ (0.4 mol%) and Dy3+ (0.4 mol%) ions-doped 20Li2O-10K2O-70B2O3 glasses. X-ray diffraction method was use to confirm the amorphous phase of samples. The physical properties have been determined based on UV absorption spectra. The hypersensitive transition of Dy3+ and Sm3+ is found due to transition of (6F11/2,6H9/2) and (6F7/2), respectively. The emission bands of Dy3+: glass has shown around 572 nm, 612 nm and 646 nm; these emissions are attributed to the transitions of 4F9/2 →6H15/2 (yellow), 4F9/2 - 6H13/2 (red) and 4F9/2 -6H11/2 (red). With regard to Sm3+: glass has three emission bands those have been generated from 4G5/2 → 6H5/2 (616 nm), 4G5/2 → 6H7/2 (660 nm) and 4G5/2 → 6H9/2 (719 nm) transitions. The current results promise several applications in optical fields such as UV-sensor, developing new color light sources and tunable visible lasers |
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Article |
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Aboud, Haydar Wagiran, Husin Hussin, Rosli |
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Aboud, Haydar Wagiran, Husin Hussin, Rosli |
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Aboud, Haydar |
title |
Luminescence properties of Dy3+ and Sm3+: Potassium lithium borate glass |
title_short |
Luminescence properties of Dy3+ and Sm3+: Potassium lithium borate glass |
title_full |
Luminescence properties of Dy3+ and Sm3+: Potassium lithium borate glass |
title_fullStr |
Luminescence properties of Dy3+ and Sm3+: Potassium lithium borate glass |
title_full_unstemmed |
Luminescence properties of Dy3+ and Sm3+: Potassium lithium borate glass |
title_sort |
luminescence properties of dy3+ and sm3+: potassium lithium borate glass |
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Penerbit UTM |
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2014 |
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http://eprints.utm.my/id/eprint/53341/ http://dx.doi.org/10.11113/jt.v68.1657 |
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