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High performance inverted polymer solar cells with solution processed metal oxides as electron transport layers: A comparative study

机译:以溶液加工的金属氧化物作为电子传输层的高性能倒置聚合物太阳能电池:对比研究

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Transparent metal oxides became an important class of low-temperature solution-processed electron transport layers (ETLs) for inverted polymer solar cells (PSCs) due to their high optical transparency in the visible range, relatively good electrical conductivity and tunable work function. In this work we made a comparative study between the electrical performances of devices realized with various metal oxides as ETLs: ZnO, ZnO:Al and TiOx. These oxides were prepared by-low-temperature solution process techniques and used in PSCs with the configuration glass/Indium tin oxide (ITO)/ETL/photoactive layer/Mo03/Ag. The photoactive layer was a blend of poly[4,8-bis(5-(2-ethylhexyl)thiophen-2-yObenzo[1,2-b;4,5-b']dithiophene-2,6-diyl-alt-(4-(2-ethylhexyl)- 3-fluorothieno[3,4-b]thiophene-)-2-carboxylate-2-6-diy1)]and [6,6]-phenyl C71 butyric acid methyl ester. The best power conversion efficiency (9.1%) under simulated AM1.5G illumination of 100 mW/cm(2), was achieved for the PSC fabricated using a ZnO:Al interlayer. In order to elucidate the electrical processes at the interfaces between the ETL and the blend, impedance spectroscopy analysis was carried out. The ZnO:Al PSC shows better charge transfer properties between the active layer and the ITO and longer charge carrier lifetime. These factors contribute to improve the fill factor and increase the current output leading to an higher power conversion efficiency. (C) 2016 Elsevier B.V. All rights reserved.
机译:透明金属氧化物由于在可见光范围内具有很高的光学透明性,相对良好的电导率和可调节的功函,因此成为倒装聚合物太阳能电池(PSC)的低温溶液处理电子传输层(ETL)的重要类别。在这项工作中,我们对使用各种金属氧化物作为ETL(ZnO,ZnO:Al和TiOx)实现的器件的电性能进行了比较研究。这些氧化物是通过低温溶液工艺技术制备的,并用于具有玻璃/氧化铟锡(ITO)/ ETL /光敏层/ Mo03 / Ag结构的PSC中。光敏层是聚[4,8-双(5-(2-乙基己基)噻吩-2-yO苯并[1,2-b; 4,5-b']二噻吩-2,6-二基-alt的混合物-(4-(2-乙基己基)-3-氟噻吩并[3,4-b]噻吩-)-2-羧酸酯-2-6-diy1)]和[6,6]-苯基C71丁酸甲酯。对于使用ZnO:Al中间层制造的PSC,在模拟的AM1.5G 100 mW / cm(2)的AM1.5G照度下获得了最佳的功率转换效率(9.1%)。为了阐明ETL和共混物之间的界面处的电气过程,进行了阻抗谱分析。 ZnO:Al PSC在活性层和ITO之间显示出更好的电荷转移特性,并具有更长的载流子寿命。这些因素有助于改善填充系数并增加电流输出,从而导致更高的功率转换效率。 (C)2016 Elsevier B.V.保留所有权利。

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