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Fabrication of Hybrid Polymer Solar Cells By Inverted Structure Based on P3HT:PCBM Active Layer

机译:基于P3HT的倒置结构制备杂交聚合物太阳能电池:PCBM活性层

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摘要

Hybrid polymer solar cell has privilege than its conventional structure, where it usually has structure of (ITO/PEDOT:PSS/Active Layer/Al). In humid environment the PEDOT:PSS will absorb water and hence can easily etch the ITO. Therefore it is necessary to use an alternative method to avoid this drawback and obtain more stable polymer solar cells, namely by using hybrid polymer solar cells structure with an inverted device architecture from the conventional, by reversing the nature of charge collection. In this paper we report the results of the fabrication of inverted bulk heterojunction polymer solar cells based on P3HT:PCBM as active layer, utilizing ZnO interlayer as buffer layer between the ITO and active layer with a stacked structure of ITO/ZnO/P3HT:PCBM/PEDOT:PSS/Ag. The ZnO interlayer is formed through short route, i.e. by dissolving ZnO nanoparticles powder in chloroform-methanol solvent blend rather than by sol-gel process. Based on the measurement results on electrical characteristics of inverted polymer solar cells under 500 W/m2 illumination and AM 1.5 direct filter at room temperature, cell with annealing process of active layer at 110 °C for 10 minutes results in higher cell performance than without annealing, with an open-circuit voltage of 0.21 volt, a short-circuit current density of 1.33 mA/cm2 , a fill factor of 43.1%, and a power conversion efficiency of 0.22%. The low cell’s performance is caused by very rough surface of ZnO interlayer.
机译:混合聚合物太阳能电池具有比其常规结构的特权,通常具有(ITO / PETOT:PSS / Active Layer / Al)的结构。在潮湿环境中,PEDOT:PSS将吸收水,因此可以轻松蚀刻ITO。因此,有必要使用替代方法来避免这种缺点并获得更稳定的聚合物太阳能电池,即通过使用来自传统的倒置装置架构的混合聚合物太阳能电池结构来逆转收集的性质。在本文中,我们将基于P3HT:PCBM作为有源层报告倒置散装异质结聚合物太阳能电池的制造结果,利用ZnO中间层作为ITO / ZnO / P3HT:PCBM堆叠结构之间的ITO和有源层之间的缓冲层/ PEDOT:PSS / AG。通过短途途径,即通过将ZnO纳米颗粒粉末溶解在氯仿 - 甲醇溶剂混合物中而不是通过溶胶 - 凝胶法制备,而不是通过溶胶 - 凝胶法形成。基于测量结果,在500W / m 2照射下的倒聚合物太阳能电池的电气特性和室温下的直接过滤器的电气特性,110℃下活性层的退火过程的电池10分钟,细胞性能比在没有退火的情况下,开路电压为0.21伏,短路电流密度为1.33mA / cm2,填充因子为43.1%,功率转换效率为0.22%。低电池的性能是由ZnO中间层的非常粗糙的表面引起的。

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