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  • Archive: 2008
05 Oct 2008
  • 2008
  • V. 7
  • 4
  • (p.420 - 432)

Synthesis and luminescent properties of multiphase green phosphor based on strontium thiogallate

Authors:

Nazarov, Mihail

Summary:

The detailed XRD analysis, EDS, Raman spectroscopy and PL study were achieved in order to enlarge the understanding of the radiative processes in multiphase green phosphors, based on strontium thiogallate. These phosphors were synthesized by solid state reaction at 900 –1000°C with carbon as a reduction atmosphere. The crystal field splitting, Stokes shift, Red shift, and centroidal shift were estimated and they are in a good agreement with mathematical calculations. Our study confirms that proposed multiphase green phosphor based on strontium thiogallate is a good candidate for solid state lighting and display devices with higher intensity and better chromaticity coordinates in comparison with known commercial phosphors.

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–1000°C with carbon as a reduction atmosphere. The crystal field splitting, Stokes shift, Red 
shift, and centroidal shift were estimated and they are in a good agreement with mathematical 
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BibTeX

@article{ibn_3938,
author = {Nazarov, M.V.},
title = {Synthesis and luminescent properties of 
multiphase green phosphor based on strontium thiogallate},
journal = {Moldavian Journal of the Physical Sciences},
year = {2008},
volume = {7 (4)},
pages = {420-432},
month = {Oct},
abstract = {(EN) The detailed XRD analysis, EDS, Raman spectroscopy and PL study were achieved in 

order to enlarge the understanding of the radiative processes in multiphase green phosphors, 
based on strontium thiogallate. These phosphors were synthesized by solid state reaction at 900 
–1000°C with carbon as a reduction atmosphere. The crystal field splitting, Stokes shift, Red 
shift, and centroidal shift were estimated and they are in a good agreement with mathematical 
calculations. Our study confirms that proposed multiphase green phosphor based on strontium 
thiogallate is a good candidate for solid state lighting and display devices with higher intensity 
and better chromaticity coordinates in comparison with known commercial phosphors. },
url = {https://ibn.idsi.md/vizualizare_articol/3938},
}

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order to enlarge the understanding of the radiative processes in multiphase green phosphors, 
based on strontium thiogallate. These phosphors were synthesized by solid state reaction at 900 
–1000°C with carbon as a reduction atmosphere. The crystal field splitting, Stokes shift, Red 
shift, and centroidal shift were estimated and they are in a good agreement with mathematical 
calculations. Our study confirms that proposed multiphase green phosphor based on strontium 
thiogallate is a good candidate for solid state lighting and display devices with higher intensity 
and better chromaticity coordinates in comparison with known commercial phosphors. </description>
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Dublin Core

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<dc:creator>Nazarov, M.V.</dc:creator>
<dc:date>2008-10-05</dc:date>
<dc:description xml:lang='en'>The detailed XRD analysis, EDS, Raman spectroscopy and PL study were achieved in 

order to enlarge the understanding of the radiative processes in multiphase green phosphors, 
based on strontium thiogallate. These phosphors were synthesized by solid state reaction at 900 
–1000°C with carbon as a reduction atmosphere. The crystal field splitting, Stokes shift, Red 
shift, and centroidal shift were estimated and they are in a good agreement with mathematical 
calculations. Our study confirms that proposed multiphase green phosphor based on strontium 
thiogallate is a good candidate for solid state lighting and display devices with higher intensity 
and better chromaticity coordinates in comparison with known commercial phosphors. </dc:description>
<dc:source>Moldavian Journal of the Physical Sciences 7 (4) 420-432</dc:source>
<dc:title>Synthesis and luminescent properties of 
multiphase green phosphor based on strontium thiogallate</dc:title>
<dc:type>info:eu-repo/semantics/article</dc:type>
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NAZAROV, Michael V.. Synthesis and luminescent properties of multiphase green phosphor based on strontium thiogallate. In: Moldavian Journal of the Physical Sciences. 2008, nr. 4(7), pp. 420-432. ISSN 1810-648X.

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