首页> 外文会议>International Conference on Materials for Advanced Technologies >Novel Quasi-Solid-State Electrolyte Based on γ-Butyrolactone and Tetrapropylammonium Iodide for Dye-Sensitized Solar Cells Using Fumed Silica as the Gelling Agent
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Novel Quasi-Solid-State Electrolyte Based on γ-Butyrolactone and Tetrapropylammonium Iodide for Dye-Sensitized Solar Cells Using Fumed Silica as the Gelling Agent

机译:基于γ-丁内酯和四丙基铵碘化物的新型准固态电解质,用于染色二氧化硅作为胶凝剂的染料敏化太阳能电池

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Dye-sensitized solar cells (DSCs) have emerged recently as low-cost photovoltaic devices, giving impressive photovoltaic conversion efficiencies. However, the use of organic solvent-based liquid electrolytes in DSCs arises many problems in long-term applications. To overcome the drawbacks associated with the liquid electrolytes, quasi-solid-state electrolytes have been introduced. Hence, this study is focused on preparation of a novel gel electrolyte system using fumed silica as the gelling agent, γ-butyrolactone (γ-BL) as the plasticizer, tetrapropylammonium iodide (Pr4N~+I~-) as the salt and iodine. DSCs were assembled according to the configuration of glass/FTO/TiO2/dye (N719)/gel electrolyte/Pt/FTO/glass. The cell performances have been studied, by varying the amounts of Pr4N~+I~- salt and plasticizer in the gel electrolyte, in order to obtain the optimum conditions. The gel electrolyte containing weight percentages of 77% of γ-BL and 23% of Pr4N~+I~- salt gave the best light-to-electricity conversion efficiency of 6.33%, saturated current density of 15.7 mA cm~(-2) and open circuit voltage of 0.636 V under simulated AM 1.5 irradiation. Here, I~-:I2 molar ratio was kept at 10:1 in the optimized gel system and fumed silica was added 10% of the total mass. The optimized gel composition is exhibited anionic conductivity of 8.69×10~(-3) S cm~(-1) at 25°C.
机译:染料敏化太阳能电池(DSCs)最近出现了低成本的光伏器件,具有令人印象深刻的光伏转换效率。然而,在DSC中使用的有机溶剂基液体电解质在长期应用中产生许多问题。为了克服与液体电解质相关的缺点,已经引入了准固态电解质。因此,该研究专注于使用气相二氧化硅作为胶凝剂,γ-丁内酯(γ-BL)作为增塑剂,四丙基碘化酯(PR4N〜+ I〜 - )作为盐和碘的新型凝胶电解质系统。根据玻璃/ FTO / TiO 2 /染料(N719)/凝胶电解质/ Pt / FTO /玻璃的构型组装DSCs。通过改变凝胶电解质中的PR4N〜+ I〜 - 盐和增塑剂的量,研究了细胞性能,以获得最佳条件。含有重量百分比的凝胶电解质为77%的γ-Bl和23%的PR4N〜+ I〜 - 盐的光 - 电转换效率为6.33%,饱和电流密度为15.7 mA cm〜(-2)在模拟AM 1.5辐照下,开路电压为0.636 V.5辐射。这里,I〜 - :I2摩尔比在优化的凝胶系统中保持10:1,并加热二氧化硅的总质量的10%。优化的凝胶组合物在25℃下表现出8.69×10〜(-3)Scm〜(-1)的阴离子导电率。

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