Electrophoretically Deposited TiO2 Nanotube Light-Scattering Layers of Dye-Sensitized Solar Cells
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概要
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We report herein the enhanced light-to-electricity conversion efficiency of a dye-sensitized solar cell using a new bilayer structure of the TiO2 electrode. The bilayer structure consists of a light-absorbing TiO2 nanoparticle layer together with a light-scattering TiO2 nanotube layer formed upon. High aspect-ratio TiO2 nanotubes ($\alpha$-TNTs) with a diameter of 20 nm were prepared via anodization of a Ti sheet in a perchloric acid solution, and the $\alpha$-TNT layer was electrophoretically deposited onto the sintered TiO2 nanoparticle layer. The light-scattering property of the $\alpha$-TNT layer was comparable to that of the commonly used TiO2 sub-micron nanoparticle layer. The $\alpha$-TNT layer provided a large surface area for dye-adsorption as well as an efficient transport pathway for photo-generated carriers. These effects allowed a higher incident photon-to-current efficiency of the bilayer TiO2 structure with the nanotube light-scattering layer over the whole spectral range relative to that with a sub-micron nanoparticle layer.
- Published by the Japan Society of Applied Physics through the Institute of Pure and Applied Physicsの論文
- 2008-08-25
著者
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Kubo Takaya
Central Technical Research Laboratory Research And Development Division Nippon Oil Corporation
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Nakayama Keisuke
Central Technical Research Laboratory Research And Development Division Nippon Oil Corporation
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Nishikitani Yoshinori
Central Technical Research Laboratory Nippon Oil Corporation
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Nakayama Keisuke
Central Technical Research Laboratory, Research & Development Division, Nippon Oil Corporation, 8 Chidori-cho, Naka-ku, Yokohama 231-0815, Japan
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Nishikitani Yoshinori
Central Technical Research Laboratory, Research & Development Division, Nippon Oil Corporation, 8 Chidori-cho, Naka-ku, Yokohama 231-0815, Japan
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Kubo Takaya
Central Technical Research Laboratory, Research & Development Division, Nippon Oil Corporation, 8 Chidori-cho, Naka-ku, Yokohama 231-0815, Japan
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