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Influence of Polymer Concentration on Polysaccharide Electrolyte for Quasi-solid-state Dye-sensitized Solar Cell

机译:聚合物浓度对准固态染料敏化太阳能电池多糖电解质的影响

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A series of polymer electrolytes was synthesized to fabricate dye-sensitized solar cells by a novel polysaccharide agarose as polymer matrix, l-methyl-2-pyrrolidinone (NMP) as plasticizers, lithium iodide (Lil)/iodine (I2) as redox couple and titania nanoparticles as an absorber. The agarose polymer electrolytes with different agarose concentrations (1-5 wt %) were systematically studied by differential scanning calorimetry (DSC) and the AC impedance spectra. The photoelectric performances of the DSSCs with different agarose content were investigated. Increasing polymer concentration led to a decrease in Tg of electrolyte in the low content range (1-2 wt %), which results in relative high conductivity in these content ranges. The 1.5 wt % agarose contained electrolyte showed the maximum conductivity of 3.94 xlO" S cm"1. After optimization, the energy conversion efficiency of 4.14 % was obtained in the cell with 2 wt % agarose.
机译:以新型多糖琼脂糖为聚合物基体,1-甲基-2-吡咯烷酮(NMP)为增塑剂,碘化锂(Lil)/碘(I2)为氧化还原对,合成了一系列聚合物电解质以制备染料敏化太阳能电池。二氧化钛纳米粒子作为吸收剂。通过差示扫描量热法(DSC)和交流阻抗谱系统地研究了不同琼脂糖浓度(1-5 wt%)的琼脂糖聚合物电解质。研究了不同琼脂糖含量的DSSCs的光电性能。在低含量范围(1-2wt%)中,聚合物浓度的增加导致电解质的Tg降低,这导致在这些含量范围内相对较高的电导率。包含1.5重量%的琼脂糖的电解质显示出最大电导率为3.94×10 -3 S cm-1。优化后,在含2 wt%琼脂糖的电池中获得4.14%的能量转换效率。

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