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Effects of Residual Oxygen in the Degradation of the Performance of Organic Bulk Heterojunction Solar Cells: Stability, Role of the Encapsulation

机译:残余氧对有机大容量异质结太阳能电池性能退化的影响:稳定性,封装作用

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We have shown in our first articles [1] [2] that even after encapsulation, the first rapid phase of degradation mechanism observed has been attributed to oxidation of interfaces and an alteration of the charges collection process. A second phase slower is induced by the oxidation of the active film, namely a decrease in the absorption and a degradation of the charge transport process. We revealed that another decrease in power conversion efficiency which has been induced by a possible interfacial passivation occurred at the organic/cathode interface, owing to the presence of residual oxygen, moisture and other impurities. This is in reality the real cause of the first rapid phase of degradation mechanism observed.
机译:我们在第一篇文章[1] [2]中已经表明,即使在封装后,观察到的降解机制的第一快速阶段也归因于界面的氧化和电荷收集过程的改变。活性膜的氧化引起第二相变慢,即吸收的减少和电荷传输过程的退化。我们发现,由于残留的氧气,水分和其他杂质的存在,在有机/阴极界面处发生了可能的界面钝化,导致功率转换效率再次下降。实际上,这是观察到的降解机制的第一个快速阶段的真正原因。

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