Eu³⁺-based bridged silsesquioxanes for transparent luminescent solar concentrators.
Identifieur interne : 002D62 ( PubMed/Curation ); précédent : 002D61; suivant : 002D63Eu³⁺-based bridged silsesquioxanes for transparent luminescent solar concentrators.
Auteurs : Vânia T. Freitas [Portugal] ; Lianshe Fu [Portugal] ; Ana M. Cojocariu [France] ; Xavier Cattoën [France] ; John R. Bartlett ; Rozenn Le Parc [France] ; Jean-Louis Bantignies [France] ; Michel Wong Chi Man [France] ; Paulo S. André [Portugal] ; Rute A S. Ferreira [Portugal] ; Luís D. Carlos [Portugal]Source :
- ACS applied materials & interfaces [ 1944-8252 ] ; 2015.
Abstract
The sol-gel preparation of a bridged silsesquioxane containing europium(III) salts and 2-thenoyltrifluoroacetone has been achieved from a new ethane tetracarboxamide-based organosilane. Free-standing films with thicknesses up to 440 μm and maximum absolute quantum yield (q) of 0.34 ± 0.03 (excitation at 320 nm) were prepared by the drop cast method, while thin films (∼200-400 nm) spin-coated on glass substrates led to highly luminescent coatings with q = 0.60 ± 0.02 (excitation at 345 nm). The thin films were tested as planar luminescent solar concentrators and the optimized device displays an optical conversion efficiency of 12.3% in the absorbing spectral region of the active layer (300-380 nm).
DOI: 10.1021/acsami.5b01281
PubMed: 25835303
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John R. Bartlett<affiliation><nlm:affiliation>⊥Faculty of Science, Health, Education and Engineering, University of the Sunshine Coast, Maroochydore DC, QLD 4558 Australia.</nlm:affiliation>
<wicri:noCountry code="subField">QLD 4558 Australia</wicri:noCountry>
</affiliation>
Le document en format XML
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<front><div type="abstract" xml:lang="en">The sol-gel preparation of a bridged silsesquioxane containing europium(III) salts and 2-thenoyltrifluoroacetone has been achieved from a new ethane tetracarboxamide-based organosilane. Free-standing films with thicknesses up to 440 μm and maximum absolute quantum yield (q) of 0.34 ± 0.03 (excitation at 320 nm) were prepared by the drop cast method, while thin films (∼200-400 nm) spin-coated on glass substrates led to highly luminescent coatings with q = 0.60 ± 0.02 (excitation at 345 nm). The thin films were tested as planar luminescent solar concentrators and the optimized device displays an optical conversion efficiency of 12.3% in the absorbing spectral region of the active layer (300-380 nm).</div>
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