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首页> 外文期刊>ACS applied materials & interfaces >Retarding Ion Exchange between Conducting Polymers and Ionic Liquids for Printable Top Electrodes in Semitransparent Organic Solar Cells
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Retarding Ion Exchange between Conducting Polymers and Ionic Liquids for Printable Top Electrodes in Semitransparent Organic Solar Cells

机译:在半透明有机太阳能电池中导电聚合物和离子液体的可印刷顶电极之间的离子交换

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Semitransparent organic solar cells (ST-OSCs) are considered to be an influential tool for aesthetic and economic building-integrated photovoltaics, which can be fabricated by the printing technology. A poly(3,4-ethylenedioxythiophene):polystyrene-sulfonate (PEDOT:PSS) and ionic liquid (IL) composite has been considered as an electrode for ST-OSCs because of its high electrical conductivity, high transparency, and printability. However, we found that the introduction of IL into the PEDOT:PSS solution for enhancing its electrical conductivity results in (1) nonreliable printing of PEDOT:PSS/IL composite films because of gradual gelation of the mixture solution and (2) the production of chemically reactive ion pairs during ion exchange between PSS and IL, which induces the oxidation of the underlying organic semiconductors during printing. To solve these problems, we developed a sequential printing method using pristine PEDOT:PSS and IL solutions to retard ion exchange, thus preventing chemical doping of organic semiconductors by newly generated ion pairs. Finally, by using only solution processes, we demonstrate efficient ST-OSCs with a printed PEDOT:PSS/IL composite as the top electrode, exhibiting a power conversion efficiency of 6.32% at an average visible transmittance of 35.4%.
机译:半透明有机太阳能电池(ST-OSC)被认为是用于美观和经济建筑集成光伏的有影响力的工具,可通过印刷技术制造。聚苯乙烯 - 磺酸盐(PEDOT:PSS)和离子液体(IL)复合材料已被认为是ST-OSC的电极,因为其高导电性,高透明度和可印刷性。然而,我们发现,IL进入PEDOT:PSS解决方案,用于提高其导电率,导致(1)不可再用的PEDOT印刷:PSS / IL复合膜由于混合物溶液的逐渐凝胶化和(2)的生产在PSS和IL之间的离子交换期间化学反应离子对,其在印刷过程中诱导下面有机半导体的氧化。为了解决这些问题,我们开发了一种使用原始PEDOT的顺序印刷方法:PSS和IL溶液延迟离子交换,从而通过新产生的离子对防止有机半导体的化学掺杂。最后,通过仅使用解决方案过程,我们用印刷PEDOT:PSS / IL复合材料作为顶电极展示了高效的ST-OSC,其电力转换效率为6.32%,平均可见透射率为35.4%。

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