Energy transfer in Gd2O3:Er nanoparticles applying as a down-conversion layer for solar cell

The optical properties of Gd2O3:Er (0.25-8 mol%) nanoparticles have been investigated. The observed effect of energy transfer from lattice Gd3+ to activator Er3+ ions can be used for enhancement of solar cells efficiency. The general scheme showing the principle of operation of down-conversion layer...

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Published inJournal of physics. Conference series Vol. 917; no. 5
Main Authors Kuznetsova, Yu A, Zatsepin, A F, Pustovarov, V A, Mashkovtsev, M A, Rychkov, V N
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.11.2017
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Abstract The optical properties of Gd2O3:Er (0.25-8 mol%) nanoparticles have been investigated. The observed effect of energy transfer from lattice Gd3+ to activator Er3+ ions can be used for enhancement of solar cells efficiency. The general scheme showing the principle of operation of down-conversion layer based on Gd2O3:Er was presented. The concentration dependences of emission intensity and energy transfer efficiency were obtained.
AbstractList The optical properties of Gd2O3:Er (0.25-8 mol%) nanoparticles have been investigated. The observed effect of energy transfer from lattice Gd3+ to activator Er3+ ions can be used for enhancement of solar cells efficiency. The general scheme showing the principle of operation of down-conversion layer based on Gd2O3:Er was presented. The concentration dependences of emission intensity and energy transfer efficiency were obtained.
Author Kuznetsova, Yu A
Mashkovtsev, M A
Pustovarov, V A
Zatsepin, A F
Rychkov, V N
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  organization: Institute of Physics and Technology, Ural Federal University , Russia
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Snippet The optical properties of Gd2O3:Er (0.25-8 mol%) nanoparticles have been investigated. The observed effect of energy transfer from lattice Gd3+ to activator...
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SubjectTerms Conversion
Energy transfer
Gadolinium
Gadolinium oxides
Nanoparticles
Optical properties
Photovoltaic cells
Physics
Solar cells
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Title Energy transfer in Gd2O3:Er nanoparticles applying as a down-conversion layer for solar cell
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