首页> 外文期刊>Journal of porous materials >Pore size dependence of self-assembled type photonic crystal on dye-sensitized solar cells efficiency utilising Chlorine e6
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Pore size dependence of self-assembled type photonic crystal on dye-sensitized solar cells efficiency utilising Chlorine e6

机译:自组装型光子晶体的孔径大小对使用氯e6的染料敏化太阳能电池效率的依赖性

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摘要

There are few reports on photoelectric conversion efficiency using naturally-occurring dyes for dyesensitized solar cells (DSSC). This is because the matching with an excited electronic level of naturally-occurring dye to the conduction band of semiconductor is problematic; the excited electrons are easily relaxed to the steady state with fluorescence or heat emission. We examined the fluorescence inhibition effect of a self-assembled photonic crystal using Chlorine e6 dye. Chlorine e6 is derived from chlorophyll and has a long excited electron lifetime. We prepared TiO_2 inverse opals with various particle sizes by liquid phase deposition and described their effect on DSSCs with regard to structural, optical and electrochemical properties. In addition, we explored the implications of fluorescence lifetime measurements relative to the photonic band diagram and the amount of adsorbed dye. Although the main factor affecting the external photoelectric conversion efficiency was the diffusion resistance of the electrolyte and the contact resistance between TiO_2 interfaces, the possibility that the dye fluorescence lifetime, i.e. the photonic band structure, can affect the internal quantum efficiency per one dye molecule was also investigated.
机译:关于使用天然存在的染料进行染料敏化太阳能电池(DSSC)的光电转换效率的报道很少。这是因为与天然存在的染料的激发电子能级匹配到半导体的导带是有问题的;被激发的电子很容易通过荧光或热量散发到稳态。我们检查了使用氯e6染料的自组装光子晶体的荧光抑制效果。氯e6衍生自叶绿素,具有长的激发电子寿命。我们通过液相沉积制备了具有各种粒径的TiO_2反蛋白石,并就结构,光学和电化学性质描述了它们对DSSC的影响。此外,我们探索了相对于光子能带图和吸附染料量的荧光寿命测量的含义。尽管影响外部光电转换效率的主要因素是电解质的扩散电阻和TiO_2界面之间的接触电阻,但染料荧光寿命(即光子能带结构)可能影响每个染料分子的内部量子效率的可能性是也进行了调查。

著录项

  • 来源
    《Journal of porous materials》 |2014年第2期|165-176|共12页
  • 作者单位

    Department of Metallurgy and Ceramics Science, Graduate School of Science and Technology, Tokyo Institute of Technology, 2-12-1, Ookayama, Meguro-ku, Tokyo 152-8552, Japan,Division of Optical and Electronic Sciences, Nihon University, 3-25-40 Sakurajosui, Setagaya-ku, Tokyo 156-8550, Japan;

    Division of Optical and Electronic Sciences, Nihon University, 3-25-40 Sakurajosui, Setagaya-ku, Tokyo 156-8550, Japan;

    Department of Metallurgy and Ceramics Science, Graduate School of Science and Technology, Tokyo Institute of Technology, 2-12-1, Ookayama, Meguro-ku, Tokyo 152-8552, Japan,Division of Optical and Electronic Sciences, Nihon University, 3-25-40 Sakurajosui, Setagaya-ku, Tokyo 156-8550, Japan;

    Department of Metallurgy and Ceramics Science, Graduate School of Science and Technology, Tokyo Institute of Technology, 2-12-1, Ookayama, Meguro-ku, Tokyo 152-8552, Japan;

    Division of Optical and Electronic Sciences, Nihon University, 3-25-40 Sakurajosui, Setagaya-ku, Tokyo 156-8550, Japan;

    Department of Metallurgy and Ceramics Science, Graduate School of Science and Technology, Tokyo Institute of Technology, 2-12-1, Ookayama, Meguro-ku, Tokyo 152-8552, Japan;

    Department of Metallurgy and Ceramics Science, Graduate School of Science and Technology, Tokyo Institute of Technology, 2-12-1, Ookayama, Meguro-ku, Tokyo 152-8552, Japan;

    Department of Metallurgy and Ceramics Science, Graduate School of Science and Technology, Tokyo Institute of Technology, 2-12-1, Ookayama, Meguro-ku, Tokyo 152-8552, Japan,Division of Optical and Electronic Sciences, Nihon University, 3-25-40 Sakurajosui, Setagaya-ku, Tokyo 156-8550, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Graetzel cell; Inverse-opal; Colloidal crystal; Self-assembly; Self-organize;

    机译:格列策尔细胞;反蛋白石;胶体晶体;自组装;自组织;

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