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Improvement performance of dye sensitised solar cells from co-sensitisation of TiO2 electrode with organic dyes based on indigo and thioindigo

机译:基于Indigo和硫代靛蓝的有机染料的TiO2电极共敏的染料敏化太阳能电池的改善性能

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摘要

This paper described a double layered co-sensitisation as new approach for achieving improved performance in dye sensitised solar cells. Therefore, dye sensitised solar cells were prepared by using two metal free substituted organic dyes based on indigo and thioindigo. Spectrophotometric evaluations of the mixture dyes in solution and on a nano anatase TiO2 substrate were carried out in order to assess possible changes in the status of the dyes in different environments. Oxidation potential measurements for mixture dyes ensured an energetically permissible and thermodynamically favourable charge transfer throughout the continuous cycle of photoelectric conversion. Anti-aggregation agent is usually utilised in fabrication of dye sensitised solar cells, so the effect of Cheno as anti-aggregation agent on TiO2 nanostructure solar cells dyes was investigated. Finally, dye sensitised solar cells were fabricated with two different organic dyes as photosensitiser in order to determine the photovoltaic behavior and conversion efficiencies of each condition.
机译:本文描述了一种双层共同敏化作为在染料敏化太阳能电池中实现改善性能的新方法。因此,通过使用基于Indigo和硫代吲哚的两个无金属取代有机染料制备染料敏化太阳能电池。进行溶液中和纳米阳离子酶TiO2底物中混合物染料的分光光度法评价,以评估不同环境中染料状态的可能变化。混合染料的氧化电位测量确保了在光电转换的连续循环中能够能量允许的和热力学良好的电荷转移。抗聚集剂通常用于制造染料敏化太阳能电池,因此研究了Cheno作为TiO2纳米结构太阳能电池染料对抗聚集剂的影响。最后,用两种不同的有机染料制造染料敏化太阳能电池作为光敏染色剂,以确定每种条件的光伏行为和转化效率。

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