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High-efficiency polymer solar cells with a cost-effective quinoxaline polymer through nanoscale morphology control induced by practical processing additives

机译:通过实际加工助剂诱导的纳米级形貌控制,采用具有成本效益的喹喔啉聚合物的高效聚合物太阳能电池

摘要

In the quest to improve the performance of polymer solar cells (PSCs) with a view to realizing economic viability, various solvent additives such as 1,8-octanedithiol (ODT), 1,8-diiodooctane (DIO), diphenylether (DPE) and 1-chloronaphthalene (CN) are used in easily obtainable poly(2,3-bis-(3-octyloxyphenyl)-quinoxaline-5,8-dyl-alt-thiophene-2,5-diyl) (TQ1)-based systems with [6,6]-phenyl C71-butyric acid methyl ester (PC71BM) as an acceptor to optimize the active layer nanomorphology. Utilizing a combination of X-ray diffraction (XRD), atomic force microscopy (AFM), and transmission electron microscopy (TEM), we find that the addition of 5% (v/v) CN leads to smoother films, less heterogeneous surface features, and well-distributed TQ1:PC71BM phases, resulting in more balanced charge transport in the devices and a highly efficient power conversion efficiency (PCE) of 7.08%. This is a record for quinoxaline-based PCSs and is also comparable with the hitherto reported highest efficiency of the PSCs in single junction devices. In addition, the PSCs using an inverted device structure show a satisfactory PCE of 5.83% with high stability to ambient exposure, maintaining over 80% of its initial PCE, even after storage in air for more than 1 month.
机译:为了提高聚合物太阳能电池(PSC)的性能以实现经济可行性,各种溶剂添加剂,例如1,8-辛二硫醇(ODT),1,8-二碘辛烷(DIO),二苯醚(DPE)和1-氯萘(CN)用于容易获得的基于聚(2,3-双-(3-辛基氧基苯基)-喹喔啉-5,8-二基-alt-噻吩-2,5-二基)(TQ1)的系统中以[6,6]-苯基C71-丁酸甲酯(PC71BM)为受体可以优化活性层的纳米形态。通过结合使用X射线衍射(XRD),原子力显微镜(AFM)和透射电子显微镜(TEM),我们发现添加5%(v / v)CN可使薄膜更光滑,表面异质性更少,以及分布均匀的TQ1:PC71BM相,从而使器件中的电荷传输更加平衡,并实现7.08%的高效功率转换效率(PCE)。这是基于喹喔啉的PCS的记录,也可以与迄今为止报道的单结器件中PSC的最高效率相媲美。此外,采用倒装器件结构的PSC表现出令人满意的5.83%的PCE,对环境暴露具有很高的稳定性,即使在空气中存储超过1个月之后,仍保持其初始PCE的80%以上。

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