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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Effect of Incorporation of Squaraine Dye on the Photovoltaic Response of Bulk Heterojunction Solar Cells Based on P3HT:PC70BM Blend
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Effect of Incorporation of Squaraine Dye on the Photovoltaic Response of Bulk Heterojunction Solar Cells Based on P3HT:PC70BM Blend

机译:基于P3HT:PC70BM共混物的方型染料掺入对大体积异质结太阳能电池光伏响应的影响

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摘要

We report the improvement of the light-harvesting property in the bulk heterojunction organic polymer solar cell based on poly(3- hexylthiophene) (P3HT) and PC70BM, with the incorporation of a nearinfrared absorbing squaraine (SQ) dye, bis[4-(2,6-di-tert-butyl)vinylpyrylium] squaraine (TBU-SQ). With the incorporation of TBU-SQ dye (2.5% by wt) in a P3HT:PC70BM (1:1 wt ratio) blend, the power conversion efficiency (PCE) has been enhanced up to 4.55% as compared to 3.47% for the device based on the P3HT:PC70BM binary blend. The improvement in the photovoltaic performance with the incorporation of TBU-SQ attributed to the improvement in the light-harvesting efficiency in the near-infrared region of solar spectrum and increased exciton dissociation into free charge carriers in the ternary blended film. The PCE has been further enhanced to 5.15% when the thermally annealed P3HT:TBUSQ: PC70BM blend was used as the photoactive layer. It was observed that the absorption profile of the active layer was broadened upon thermal treatment as a result of the red shift as well as widening of the P3HT absorption band and the slight red shift of the TBU-SQ absorption peak in the blended film. The improved light-harvesting property of the thermally annealed film and balanced charge transport in the device were attributed to the improvement in the PCE. These results show that TBU-SQ is a promising molecular sensitizer for increasing the PCE of P3HT:PC70BM-based polymer solar cells.
机译:我们报告了基于聚(3-己基噻吩)(P3HT)和PC70BM的本体异质结有机聚合物太阳能电池的光吸收性能的改进,其中引入了近红外吸收方酸(SQ)染料bis [4-( 2,6-二叔丁基)乙烯基吡啶鎓]方酸(TBU-SQ)。通过在P3HT:PC70BM(1:1重量比)混合物中掺入TBU-SQ染料(2.5 wt%),功率转换效率(PCE)提高到4.55%,而该器件为3.47%基于P3HT:PC70BM二元混合。通过掺入TBU-SQ,光伏性能的改善归因于太阳光谱近红外区域中光收集效率的改善以及三元混合膜中激子离解成自由电荷载流子的增加。当将热退火的P3HT:TBUSQ:PC70BM共混物用作光敏层时,PCE进一步提高到5.15%。观察到,由于在共混膜中红移,P3HT吸收带变宽以及TBU-SQ吸收峰的轻微红移,热处理后活性层的吸收分布变宽。器件中热退火膜的聚光性能得到改善,并且电荷迁移达到平衡,这归因于PCE的提高。这些结果表明,TBU-SQ是用于提高基于P3HT:PC70BM的聚合物太阳能电池PCE的有前途的分子敏化剂。

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