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Influence of electrolyte co-additives on the performance of dye-sensitized solar cells

机译:电解质共添加剂对染料敏化太阳能电池性能的影响

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摘要

The presence of specific chemical additives in the redox electrolyte results in an efficient increase of the photovoltaic performance of dye-sensitized solar cells (DSCs). The most effective additives are 4-tert-butylpyridine (TBP), N-methylbenzimidazole (NMBI) and guanidinium thiocyanate (GuNCS) that are adsorbed onto the photoelectrode/electrolyte interface, thus shifting the semiconductor's conduction band edge and preventing recombination with triiodides. In a comparative work, we investigated in detail the action of TBP and NMBI additives in ionic liquid-based redox electrolytes with varying iodine concentrations, in order to extract the optimum additive/I2 ratio for each system. Different optimum additive/I2 ratios were determined for TBP and NMBI, despite the fact that both generally work in a similar way. Further addition of GuNCS in the optimized electrolytic media causes significant synergistic effects, the action of GuNCS being strongly influenced by the nature of the corresponding co-additive. Under the best operation conditions, power conversion efficiencies as high as 8% were obtained.
机译:氧化还原电解质中特定化学添加剂的存在可有效提高染料敏化太阳能电池(DSC)的光伏性能。最有效的添加剂是4-叔丁基吡啶(TBP),N-甲基苯并咪唑(NMBI)和硫氰酸胍(GuNCS),它们吸附在光电极/电解质界面上,从而改变半导体的导带边缘并防止与三碘化物的复合。在比较工作中,我们详细研究了TBP和NMBI添加剂在具有不同碘浓度的离子液体基氧化还原电解质中的作用,以便为每个系统提取最佳的添加剂/ I2比。尽管TBP和NMBI通常以相似的方式起作用,但确定了不同的最佳添加剂/ I2比。在优化的电解介质中进一步添加GuNCS会产生明显的协同作用,相应的共添加剂的性质会强烈影响GuNCS的作用。在最佳工作条件下,功率转换效率高达8%。

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