articleTop 10% cited
Highly efficient co-sensitization of nanocrystalline TiO2 electrodes with plural organic dyes
New Journal of Chemistry · 2005 · Vol. 29(6) · pp. 773–773
YOU-SHENG CHEN(University of Chinese Academy of Sciences)Zhanghua Zeng(Technical Institute of Physics and Chemistry)Chao Li(Technical Institute of Physics and Chemistry)Weibo Wang(Chinese Academy of Sciences)Xuesong Wang✉(Technical Institute of Physics and Chemistry)Baowen Zhang✉(Technical Institute of Physics and Chemistry)
Abstract
Through cooperative interactions, each of the three organic dyes utilized achieved improved sensitizing abilities on nanocrystalline TiO2 electrodes in co-sensitization over single-dye-sensitization, which led to a wide (400–700 nm) and highly efficient (exceeding 70%) photocurrent action spectrum in triple-dye-sensitization and an overall power conversion efficiency (η) of 6.5% (AM1.5, 80 mW cm−2), the highest η to date for dye-sensitized solar cells (DSSCs) based on the co-sensitization of plural organic dyes, fully demonstrating the potential of co-sensitization in DSSC applications.
TiO2 Photocatalysis and Solar CellsAdvanced Photocatalysis TechniquesAdvanced Nanomaterials in CatalysisChemistrySensitizationDye-sensitized solar cellPhotocurrentNanocrystalline materialOrganic dyeElectrodeChemical engineeringOptoelectronicsMaterials science
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References
A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films
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Engineering of Efficient Panchromatic Sensitizers for Nanocrystalline TiO<sub>2</sub>-Based Solar Cells
Journal of the American Chemical Society · 2001 · 2,563 citations
Conversion of light to electricity by cis-X2bis(2,2'-bipyridyl-4,4'-dicarboxylate)ruthenium(II) charge-transfer sensitizers (X = Cl-, Br-, I-, CN-, and SCN-) on nanocrystalline titanium dioxide electrodes
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