The electrodeposition of multilayers on a polymeric substrate in flexible organic photovoltaic solar cells

Andre F. S. Guedes, V. P. Guedes, M. L. Souza, S. Tartari, I. J. Cunha
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引用次数: 9

Abstract

Flexible organic photovoltaic solar cells have drawn intense attention due to their advantages over competing solar cell technologies. The method utilized to deposit as well as to integrate solutions and processed materials, manufacturing organic solar cells by the Electrodeposition System, has been presented in this research. In addition, we have demonstrated a successful integration of a process for manufacturing the flexible organic solar cell prototype and we have discussed on the factors that make this process possible. The maximum process temperature was 120°C, which corresponds to the baking of the active polymeric layer. Moreover, the new process of the Electrodeposition of complementary active layer is based on the application of voltage versus time in order to obtain a homogeneous layer with thin film. This thin film was not only obtained by the electrodeposition of PANI-X1 on P3HT/PCBM Blend, but also prepared in perchloric acid solution. Furthermore, these flexible organic photovoltaic solar cells presented power conversion efficiency of 12% and the inclusion of the PANI-X1 layer reduced the effects of degradation on these organic photovoltaic panels induced by solar irradiation. Thus, in the Scanning Electron Microscopy (SEM), these studies have revealed that the surface of PANI-X1 layers is strongly conditioned by the dielectric surface morphology.
柔性有机光伏太阳能电池中多层聚合物基板的电沉积
柔性有机光伏太阳能电池因其相对于其他太阳能电池技术的优势而备受关注。本研究介绍了电沉积系统用于沉积以及集成溶液和加工材料,制造有机太阳能电池的方法。此外,我们已经展示了制造柔性有机太阳能电池原型的成功集成过程,并讨论了使该过程成为可能的因素。最高工艺温度为120℃,对应于活性聚合物层的烘烤温度。此外,电沉积互补有源层的新工艺是基于施加电压与时间的关系,以获得具有薄膜的均匀层。PANI-X1薄膜不仅是在P3HT/PCBM共混物上电沉积得到的,而且是在高氯酸溶液中制备的。此外,这些柔性有机光伏太阳能电池的功率转换效率为12%,并且PANI-X1层的包裹减少了太阳辐照对这些有机光伏电池板的降解影响。因此,在扫描电子显微镜(SEM)中,这些研究揭示了PANI-X1层的表面受到介电表面形貌的强烈影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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