Efficient passivated phthalocyanine-quantum dot solar cells
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Other documents of the author: Blas Ferrando, Vicente M.; Ortiz, Javier; González Pedro, Victoria; S. Sánchez, Rafael; Mora-Sero, Ivan; Fernández Lázaro, Fernando; Sastre Santos, Ángela
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Show full item recordcomunitat-uji-handle:10234/9
comunitat-uji-handle2:10234/2507
comunitat-uji-handle3:10234/6973
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INVESTIGACIONMetadata
Title
Efficient passivated phthalocyanine-quantum dot solar cellsAuthor (s)
Date
2014-12-08Publisher
Royal Society of ChemistryISSN
1359-7345Bibliographic citation
BLAS-FERRANDO, Vicente M., et al. Efficient passivated phthalocyanine-quantum dot solar cells. Chemical Communications, 2015, vol. 51, no 9, p. 1732-1735.Type
info:eu-repo/semantics/articlePublisher version
http://pubs.rsc.org/en/content/articlehtml/2015/cc/c4cc08104hVersion
info:eu-repo/semantics/acceptedVersionSubject
cadmium selenide | cadmium sulfide | phthalocyanine derivative | quantum dot | titanium dioxide | cadmium derivative | indole derivative | phthalocyanine | selenium derivative | titanium | Cadmium Compounds | Electric Power Supplies | Electrodes | Indoles | Selenium Compounds | Solar Energy | Titanium
Abstract
The power conversion efficiency of CdSe and CdS quantum dot sensitized solar cells is enhanced by passivation with asymmetrically substituted phthalocyanines. The introduction of the phthalocyanine dye increases the ... [+]
The power conversion efficiency of CdSe and CdS quantum dot sensitized solar cells is enhanced by passivation with asymmetrically substituted phthalocyanines. The introduction of the phthalocyanine dye increases the efficiency up to 45% for CdSe and 104% for CdS. The main mechanism causing this improvement is the quantum dot passivation. This study highlights the possibilities of a new generation of dyes designed to be directly linked to QDs instead of the TiO2 electrodes. [-]
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Chemical Communications, 2015, vol. 51, no 9Rights
© The Royal Society of Chemistry 2015
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