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- W2094829134 abstract "The effect of mesoporous structures sensitized with poly(3-thiophene acetic acid) (PTAA) on the photovoltaic performance was investigated. In contrast to conventional Ru-complex dye-sensitized solar cells (DSCs), the cell efficiency of PTAA-sensitized solar cells exhibited strong dependence on the pore structures. Incorporation of up to large nanoparticles into small nanoparticles increased η, in spite of a reduction in dye loading due to a decrease in surface area. The highest η of was obtained for a film comprised of and . Electrochemical impedance measurements suggested that the 25% increase in η for the DSC comprised of resulted not from rapid diffusion of the redox electrolyte through the larger pores, but instead was due to the higher electron density in the conduction band of . It was inferred, therefore, that the highest η obtained for the DSC comprised of was due to the high degree of anchoring of COOH groups. This inference was further confirmed by obtaining an η of , the highest η ever reported for a polymer-dye based DSC, using a low-molecular weight PTAA sensitizer." @default.
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- W2094829134 date "2011-01-01" @default.
- W2094829134 modified "2023-10-16" @default.
- W2094829134 title "TiO[sub 2] Composites for Efficient Poly(3-thiophene acetic acid) Sensitized Solar Cells" @default.
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- W2094829134 doi "https://doi.org/10.1149/1.3519305" @default.
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