首页> 外文期刊>Journal of physical chemistry letters >Toward Higher Energy Conversion Efficiency for Solid Polymer Electrolyte Dye-Sensitized Solar Cells: Ionic Conductivity and TiO2 Pore-Filling
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Toward Higher Energy Conversion Efficiency for Solid Polymer Electrolyte Dye-Sensitized Solar Cells: Ionic Conductivity and TiO2 Pore-Filling

机译:固体聚合物电解质染料敏化太阳能电池具有更高的能量转换效率:离子电导率和TiO2填充孔

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摘要

Even though the solid polymer electrolyte has many intrinsic advantages over the liquid electrolyte, its ionic conductivity and mesopore-filling are much poorer than those of the liquid electrolyte, limiting its practical application to electrochemical devices such as dye-sensitized solar cells (DSCs). Two major shortcomings associated with utilizing solid polymer electrolytes in DSCs are first discussed, low ionic conductivity and poor pore-filling in mesoporous photoanodes for DSCs. In addition, future directions for the successful utilization of solid polymer electrolytes toward improving the performance of DSCs are proposed. For instance, the facilitated mass-transport concept could be applied to increase the ionic conductivity. Modified biphasic and triple-phasic structures for the photoanode are suggested to take advantage of both the liquid- and solid-state properties of electrolytes.
机译:尽管固体聚合物电解质比液体电解质具有许多固有的优势,但其离子电导率和中孔填充性却比液体电解质差得多,这限制了其在电化学装置中的实际应用,例如染料敏化太阳能电池(DSC)。首先讨论了与在DSC中使用固体聚合物电解质相关的两个主要缺点,即离子电导率低和DSC的介孔光阳极中的孔填充不良。此外,提出了成功利用固体聚合物电解质改善DSC性能的未来方向。例如,便利的质量传输概念可以应用于增加离子电导率。建议用于光阳极的修饰的双相和三相结构利用电解质的液态和固态特性。

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