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Synthesis, characterization, and dye-sensitized solar cell fabrication using solid biopolymer electrolyte membranes

机译:使用固体生物聚合物电解质膜的合成,表征和染料敏化太阳能电池制造

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摘要

Solid biopolymer-based electrolytes have been synthesized and characterized. Potassium iodide (KI) and iodine have been added in a biopolymer (sago palm) matrix to develop solid polymer electrolyte. Relationships between electrical and ionic transport parameters have been studied in detail, and the mechanism for ion transport has been proposed. Impedance spectroscopy reveals a significant enhancement in ionic conductivity by salt doping and the conductivity maxima was obtained at 50 wt% of KI concentration and also the system displays Arrhenius behavior. Dielectric phenomenon, mobility, charge carrier density, and diffusion coefficient also supports the conductivity data. Fourier transform infrared spectroscopy confirms the formation of a complex structure, while X-ray diffraction and optical microscopy affirms the complex structure as well as a reduction of crystallinity in the biopolymer electrolyte by salt doping. A dye-sensitized solar cell fabricated using fluorine-doped tin oxide-titanium dioxide (N3 dye)/maximum conducting electrolyte showed the short-circuit current density of 2.91 x 10(-4) A cm(-2), open-circuit voltage of 0.58 V, and efficiency of 0.57% at 1 sun condition.
机译:已经合成和表征了基于生物聚合物的固体电解质。碘化钾(KI)和碘已添加到生物聚合物(西米棕榈)基质中,以开发固体聚合物电解质。详细研究了电和离子迁移参数之间的关系,并提出了离子迁移的机理。阻抗谱显示通过盐掺杂显着增强了离子电导率,并且在KI浓度为50 wt%时获得了最大电导率,并且该系统还显示了Arrhenius行为。介电现象,迁移率,电荷载流子密度和扩散系数也支持电导率数据。傅里叶变换红外光谱法证实了复杂结构的形成,而X射线衍射和光学显微镜证实了盐分掺杂导致生物聚合物电解质中的复杂结构以及结晶度降低。使用掺氟氧化锡-二氧化钛(N3染料)/最大导电电解质制成的染料敏化太阳能电池,其短路电流密度为2.91 x 10(-4)A cm(-2),开路电压0.58 V的电压,在1个阳光条件下的效率为0.57%。

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