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首页> 外文期刊>Journal of Materials Science >Enhanced ionic mobility and increased efficiency of dye-sensitized solar cell by adding lithium chloride in poly(vinylidene fluoride) nanofiber as electrolyte medium
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Enhanced ionic mobility and increased efficiency of dye-sensitized solar cell by adding lithium chloride in poly(vinylidene fluoride) nanofiber as electrolyte medium

机译:通过将聚(偏二氟乙烯)纳米纤维中加入氯化锂作为电解质介质,增强离子迁移率和染料敏化太阳能电池的效率

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摘要

Wearable energy-harvesting devices have gained far-reaching interest during the past 5 years. Therefore, flexible electrodes and polymer nanofiber-based bendable separators, used as gel-like electrolytes, including poly(vinylidene fluoride) (PVdF) nanofibers are focused. However, the commonly used PVdF nanofibers are hydrophobic in nature, and hence, the mobility and ionic conductivity of iodide/tri-iodide ions, within the polymer nanofiber host, are low. Here, we report an electrospun PVdF nanofiber-electrolyte composite separator between photoanode and counter electrode in dye-sensitized solar cell (DSSC), having lithium chloride (LiCl) salt in it, with the aim of improving the ionic conductivity of ions, due to a high ionization potential of LiCl. The results show that by adding 1.0% LiCl in PVdF, a higher ionic conductivity of ions with a value of 4.29 x 10(-4) S cm(-1) is obtained, compared to 3.45 x 10(-4) for no salt added. Further, a lower charge transfer resistance (R (CT)) value at the electrode-electrolyte interface is also observed by using 1.0% LiCl for both symmetrical and full-cell structures of DSSC with the values of 1.57 and 1.884 Omega compared to 3.775 and 2.954 Omega, respectively, of the cells with no salt. Consequently, a higher overall cell efficiency was also obtained as the cells having 1.0% in PVdF showed 8.73% power conversion efficiency compared to 7.87% of the cells without LiCl. Moreover, compared to the normal DSSC with liquid electrolyte, the proposed nanofiber separator-made DSSC only lost 1.9% efficiency, showing its promise to be used in the next generation of flexible solar cells and textile-structured solar cells in future.
机译:可穿戴式能量收集装置已在过去5年中取得了深远的兴趣。因此,柔性电极和基于聚合物的纳米纤维可弯曲隔膜,用作凝胶状电解质,其包括聚(偏二氟乙烯)(PVDF)纳米纤维被聚焦。然而,通常使用的的PVdF纳米纤维是疏水性的,因此,移动性和碘化物/三碘化物离子的离子导电性,该聚合物纳米纤维宿主内,是低的。这里,我们报告光电阳极和反电极在染料敏化太阳能电池(DSSC)之间的电纺PVdF纳米纤维 - 电解质复合隔膜,使用具有在它氯化锂(LiCl)的盐,以改善离子的离子导电性的目的,因氯化锂的高电离势。结果表明,通过在PVDF,离子与被得到4.29×10(-4)S厘米(-1)的值的较高的离子电导率加入1.0%的LiCl,相对于3.45×10(-4),用于无盐添加。此外,较低的电荷转移电阻(R(CT))在电极 - 电解质界面值也通过使用1.0%的LiCl用于DSSC的对称和全细胞结构与1.57和1.884的值观察欧米茄相比3.775和2.954欧米茄,分别与无盐的单元。因此,也获得作为在具有的PVdF 1.0%的细胞更高的总电池效率表明相比于细胞而不的LiCl 7.87%8.73%的功率转换效率。此外,相比于用液体电解质正常DSSC,所提出的纳米纤维分离器制成的DSSC仅丢失1.9%的效率,示出了在下一代柔性太阳能电池和在未来的纺织结构的太阳能电池的情况下使用其承诺。

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  • 来源
    《Journal of Materials Science 》 |2017年第24期| 共10页
  • 作者单位

    Hanyang Univ Dept Organ &

    Nano Engn Seoul 133791 South Korea;

    Mehran Univ Engn &

    Technol Dept Text Engn Nanomat Res Lab Jamshoro 76062 Pakistan;

    Mehran Univ Engn &

    Technol Dept Text Engn Nanomat Res Lab Jamshoro 76062 Pakistan;

    Korea Inst Ind Technol Res Inst Ind Technol Convergence Tech Text &

    Mat R&

    D Grp Ansan South Korea;

    Hanyang Univ Dept Organ &

    Nano Engn Seoul 133791 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
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