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首页> 外文期刊>ACS applied materials & interfaces >Efficient Polymer Solar Cells by Lithium Sulfonated Polystyrene as a Charge Transport Interfacial Layer
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Efficient Polymer Solar Cells by Lithium Sulfonated Polystyrene as a Charge Transport Interfacial Layer

机译:磺化聚苯乙烯的高效聚合物太阳能电池作为电荷输送界面层

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摘要

In this paper, we report the highly efficient bulk heterojunction (BHJ) polymer solar cells (PSCs) with an inverted device structure via utilizing an ultrathin layer of lithium sulfonated polystyrene (LiSPS) ionomer to reengineer the surface of the solution-processed zinc oxide (ZnO) electron extraction layer (EEL). The unique lithium-ionic conductive LiSPS contributes to enhanced electrical conductivity of the ZnO/LiSPS EEL, which not only facilitates charge extraction from the BHJ active layer but also minimizes the energy loss within the charge transport processes. In addition, the organic-inorganic LiSPS ionomer well circumvents the coherence issue of the organic BHJ photoactive layer on the ZnO EEL. Consequently, the enhanced charge transport and the lowered internal resistance between the BHJ photoactive layer and the ZnO/LiSPS EEL give rise to a dramatically reduced dark saturation current density and significantly minimized charge carrier recombination. As a result, the inverted BHJ PSCs with the ZnO/LiSPS EEL exhibit an approximatively 25% increase in power conversion efficiency. These results indicate our strategy provides an easy, but effective, approach to reach high performance inverted PSCs.
机译:在本文中,我们通过利用超薄的磺化聚苯乙烯(Lisps)离聚物,通过倒置器件结构报告高效的体积异质结(BHJ)聚合物太阳能电池(PSC),以重新进入溶液加工氧化锌的表面( ZnO)电子提取层(EEL)。独特的锂离子导电Lisps有助于增强ZnO / Lisps鳗的导电性,这不仅有助于来自BHJ活性层的电荷提取,而且还可以最大限度地减少电荷运输过程中的能量损失。此外,有机无机菌离子离聚物阱围绕ZnO鳗鱼上有机BHJ光活性层的相干问题。因此,增强电荷传输和BHJ光活性层和ZnO / Lisps鳗之间的降低的内阻导致显着减少的暗饱和电流密度,并显着最小化电荷载体重组。结果,具有ZnO / LispS鳗的倒立的BHJ PSC具有近似25%的功率转换效率提高。这些结果表明,我们的策略提供了一种简单但有效的方法来达到高性能倒PSC。

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