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Transfer-printed PEDOT : PSS electrodes using mild acids for high conductivity and improved stability with application to flexible organic solar cells

机译:转印PEDOT:PSS电极,使用弱酸,具有高电导率和更高的稳定性,可应用于柔性有机太阳能电池

摘要

Highly conductive, flexible, and transparent electrodes (FTEs) of PEDOT:PSS films on plastic substrates have been achieved using strong acid treatments. However, it is rare to realize a performance attenuation of PEDOT:PSS FTEs on plastic substrates and flexible optoelectronic devices because of strong acid residues in the PEDOT:PSS matrix. Herein, we develop a feasible transfer-printing technique using mild acids. Because of a mild and weak property of these acids and less acid residues in PEDOT:PSS matrix, the transferred PEDOT:PSS FTEs exhibited a significant enhancement in stability, conductivity (3500 S cm-1), transparency, and mechanical flexibility on plastic substrates. Flexible organic solar cells with the FTEs also showed a remarkable enhancement in power conversion efficiency and stability in the ambient atmosphere. It is expected that the novel transfer-printing technique for making PEDOT:PSS FTEs is also useful in many other types of flexible optoelectronic devices.
机译:使用强酸处理已经实现了塑料基材上PEDOT:PSS膜的高导电,柔性和透明电极(FTE)。但是,由于PEDOT:PSS基质中存在强酸残留物,因此很难在塑料基板和柔性光电设备上实现PEDOT:PSS FTE的性能衰减。在本文中,我们开发了一种使用弱酸的可行的转印技术。由于这些酸的性质温和而弱,并且在PEDOT:PSS基质中残留的酸少,因此转移的PEDOT:PSS FTE在塑料基材上的稳定性,导电性(3500 S cm-1),透明性和机械柔韧性显着提高。 。具有FTE的柔性有机太阳能电池在功率转换效率和周围大气稳定性方面也表现出显着提高。可以预期,用于制造PEDOT:PSS FTE的新颖转移打印技术也可用于许多其他类型的柔性光电设备。

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