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Improving Air-Stability and Performance of Bulk Heterojunction Polymer Solar Cells Using Solvent Engineered Hole Selective Interlayer

机译:使用溶剂工程空穴选择中间层改善大体积异质结聚合物太阳能电池的空气稳定性和性能

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摘要

In bulk heterojunction polymer solar cells (BHJ-PSCs), poly(3,4-ethylenedioxythiophene) doped with poly(styrene sulfonate) (PEDOT:PSS) is the most commonly used hole selective interlayer (HSIL). However, its acidity, hygroscopic nature, and the use of indium tin oxide (ITO) etching can degrade the overall photovoltaic performance and the air-stability of BHJ-PSCs. Solvent engineering is considered as a facile approach to overcome these issues. In this work, we engineered the HSIL using ethanol (ET) treated PEDOT:PSS to simultaneously enhance the photovoltaic performance properties and air-stability of the fabricated devices. We systematically investigated the influence of ET on the microstructural, morphological, interfacial characteristics of modified HSIL and photovoltaic characteristics of BHJ-PSCs. Compared with the BHJ-PSC with pristine PEDOT:PSS, a significant enhancement of power conversion efficiency (~17%) was witnessed for the BHJ-PSC with PEDOT:PSS-ET (v/v, 1:0.5). Consequently, the BHJ-PSC with PEDOT:PSS-ET (v/v, 1:0.5) as HSIL exhibited remarkably improved air-stability.
机译:在块状异质结聚合物太阳能电池(BHJ-PSC)中,掺杂有聚苯乙烯磺酸盐(PEDOT:PSS)的聚(3,4-乙撑二氧噻吩)是最常用的空穴选择中间层(HSIL)。但是,其酸度,吸湿性以及使用铟锡氧化物(ITO)蚀刻会降低BHJ-PSC的总体光伏性能和空气稳定性。溶剂工程被认为是克服这些问题的简便方法。在这项工作中,我们使用乙醇(ET)处理的PEDOT:PSS设计了HSIL,以同时增强光伏性能和所制造器件的空气稳定性。我们系统地研究了ET对改性HSIL的微观结构,形态,界面特性以及BHJ-PSC的光伏特性的影响。与带有原始PEDOT:PSS的BHJ-PSC相比,带有PEDOT:PSS-ET的BHJ-PSC的功率转换效率显着提高(〜17%)(v / v,1:0.5)。因此,作为HSIL的PEDOT:PSS-ET(v / v,1:0.5)的BHJ-PSC表现出显着改善的空气稳定性。

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