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Performance Analysis of Jatropha Oil-Based Polyurethane Acrylate Gel Polymer Electrolyte for Dye-Sensitized Solar Cells

机译:用于染料敏化太阳能电池的麻风法油基聚氨酯丙烯酸酯凝胶聚合物电解质的性能分析

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Biobased polymers are useful materials in substituting conventional petroleum-derived polymers because of their good properties, ready availability, and abundance in nature. This study reports a new jatropha oil-based gel polymer electrolyte (GPE) for use in dye-sensitized solar cells (DSSCs). The GPE was prepared by mixing jatropha oil-based polyurethane acrylate (PUA) with different concentrations of lithium iodide (LiI). The GPE was characterized by infrared spectroscopy, thermal analysis, lithium nuclear magnetic resonance analysis, electrochemical analysis, and photocurrent conversion efficiency. The highest room-temperature ionic conductivity of 1.88 × 10~(–4) S cm~(–1) was obtained at 20 wt % of LiI salt. Additionally, the temperature-dependent ionic conductivity of the GPE exhibited Arrhenius behavior with an activation energy of 0.42 eV and a pre-exponential factor of 1.56 × 10~(3) S cm~(–1). The electrochemical stability study showed that the PUA GPE was stable up to 2.35 V. The thermal stability of the gel electrolyte showed an improvement after the addition of the salt, suggesting a strong intermolecular interaction between PUA and Li, which leads to polymer–salt complexation, as proven by Fourier transform infrared spectroscopy analysis. A DSSC has been assembled using the optimum ionic conductivity gel electrolyte which indicated 1.2% efficiency under 1 sun condition. Thus, the jatropha oil-based GPE demonstrated favorable properties that make it a promising alternative to petroleum-derived polymer electrolytes in DSSCs.
机译:由于它们的良好性质,现成可用性和丰富性,生物化聚合物是用常规石油衍生的聚合物代替常规石油衍生的聚合物的有用材料。本研究报告了一种用于染料敏化太阳能电池(DSSCs)的新型麻风树油基凝胶聚合物电解质(GPE)。通过用不同浓度的碘化锂(LiI)混合Joatropha油基聚氨酯丙烯酸酯(PUA)来制备GPE。 GPE的特征在于红外光谱,热分析,锂核磁共振分析,电化学分析和光电流转换效率。在20wt%的LiI盐获得1.88×10〜(-4)Cm〜(-1)的最高室温离子电导率。另外,GPE的温度依赖性离子电导率显示出Arhenius行为,其活化能量为0.42eV和1.56×10〜(3)厘米〜(-1)的预指数因子。电化学稳定性研究表明,PUA GPE稳定达2.35V。凝胶电解质的热稳定性在加入盐后显示出改善,表明Pua和Li之间的强分子间相互作用,这导致聚合物 - 盐络合,通过傅里叶变换红外光谱分析。使用DSSC使用最佳离子电导率凝胶电解质组装,其在1个阳光条件下表示1.2%的效率。因此,基于麻风树油基GPE证明了使其成为DSSCs中的石油衍生聚合物电解质的有希望的替代品。

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