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Solid-State Composite Electrolyte Lil/3-Hydroxypropionitrile/ SiO_2 for Dye-Sensitized Solar Cells

机译:染料敏化太阳能电池固态复合电解质Lil / 3-羟基丙腈/ SiO_2

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摘要

A new compound,Lil(3-hydroxypropionitrile)2,is reported here.According to its single-crystal structure (C2/c),this compound has 3-D transporting paths for iodine.Further ab initio calculation shows that the activation energy for diffusion of iodine (0.73 eV) is much lower than that of lithium ion (8.39 eV) within the lattice.Such a mono-ion transport feature is favorable as solid electrolyte to replace conventional volatile organic liquid electrolytes used in dye-sensitized solar cells (DSSC).Lil and 3-hydroxypropionitrile (HPN) can form a series of solid electrolytes.The highest ambient conductivity is 1.4 x 10~(-3) S/cm achieved for Lil(HPN)_4.However,it tends to form large crystallites and leads to poor filling and contact within porous TiO2 electrodes in DSSC.Such a drawback can be greatly improved by introducing micrometer-sized and nanosized SiO2 particles into the solid electrolyte.It is helpful not only in enhancing the conductivity but also in improving the interfacial contact greatly.Consequently,the light-to-electricity conversion efficiency of 5.4% of a DSSC using Lil(HPN)_4/15 wt % nano-SiO_2 was achieved under AM 1.5 simulated solar light illumination.Due to the low cost,easy fabrication,and relatively high conversion efficiency,the DSSC based on this new solid-state composite electrolyte is promising for practical applications.
机译:本文报道了一种新的化合物,Lil(3-羟基丙腈)2。根据其单晶结构(C2 / c),该化合物具有碘的3-D传输路径。进一步的从头算表明,活化能为碘(0.73 eV)的扩散比锂离子(8.39 eV)在晶格中的扩散要低得多。这种单离子传输特性作为固体电解质有利于代替染料敏化太阳能电池中使用的传统挥发性有机液体电解质( Dil和3-羟基丙腈(HPN)可以形成一系列固体电解质.Lil(HPN)_4的最高环境电导率为1.4 x 10〜(-3)S / cm,但是它倾向于形成大的微晶并导致DSSC中多孔TiO2电极内部的填充和接触不良。将微米级和纳米级SiO2颗粒引入固体电解质可以大大改善这一缺点,不仅有助于提高电导率,而且还可以改善导电性。界面接触因此,在AM 1.5模拟太阳光下,使用Lil(HPN)_4 / 15 wt%纳米SiO_2的DSSC的光电转换效率达到了5.4%。由于低成本,易于制造,且具有较高的转化效率,基于这种新型固态复合电解质的DSSC具有广阔的应用前景。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第17期|p.6394-6401|共8页
  • 作者单位

    Contribution from the Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of Sciences,Beijing 100080,China;

    Contribution from the Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of Sciences,Beijing 100080,China;

    Contribution from the Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of Sciences,Beijing 100080,China;

    Contribution from the Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of Sciences,Beijing 100080,China;

    Contribution from the Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of Sciences,Beijing 100080,China;

    Contribution from the Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of Sciences,Beijing 100080,China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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