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Effect of molecular weight of oligomer on ionic diffusion in oligomer electrolytes and its implication for dye-sensitized solar cells

机译:低聚物分子量对低聚物电解质中离子扩散的影响及其对染料敏化太阳能电池的影响

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摘要

This study measures the diffusion coefficients of I~- and I_3~- in oligomer electrolytes as a function of the molecular weight of oligomers and investigates their effect on the performance of dye-sensitized solar cells (DSSCs). The high-diffusion coefficients of ions in an oligomer electrolyte with a lower molecular weight can help to promote the redox mechanism in DSSCs and thereby increase the short-circuit current density. They can also cause a decrease in the open-circuit voltage since a high-diffusion coefficient of I_3~- is capable of reducing the lifetime of electrons in TiO_2 electrodes. To offset these effects, N-methyl-benzimidazole is added to the oligomer electrolytes, thereby improving the open-circuit voltage and fill factor and, consequently, the overall energy-conversion efficiency, which increases to over 5%. A further test involving storage at a high temperature of 75℃ demonstrates that DSSCs employing the oligomer electrolytes show excellent thermal stability over 200 h.
机译:本研究测量了低聚物电解质中I〜-和I_3〜-的扩散系数与低聚物分子量的关系,并研究了它们对染料敏化太阳能电池(DSSC)性能的影响。分子量较低的低聚物电解质中离子的高扩散系数可以帮助促进DSSC中的氧化还原机理,从而增加短路电流密度。由于I_3〜-的高扩散系数能够缩短TiO_2电极中电子的寿命,因此它们也可能导致开路电压降低。为了抵消这些影响,向低聚物电解质中添加了N-甲基苯并咪唑,从而改善了开路电压和填充因数,从而提高了总能量转换效率,该效率提高到了5%以上。进一步的测试涉及在75℃的高温下存储,这表明采用低聚物电解质的DSSC在200小时内表现出出色的热稳定性。

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