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Stable inverted small molecular organic solar cells using a p-doped optical spacer

机译:稳定的倒倒小分子有机太阳能电池使用P掺杂光学垫片

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摘要

We report inverted small molecular organic solar cells using a doped window layer as an optical spacer. The optical spacer was used to shift the optical field distribution inside the active layers, generating more charge carriers from sunlight. In this report, N,N,N',N'-tetrakis(4-methoxyphenyl)-benzidine (MeO-TPD) was doped with 2,2-(perfluoronaphthalene-2,6-diylidene)dimalononitrile (F6-TCNNQ), a p-type dopant material. P-doped MeO-TPD was adopted as an optical spacer because it has a large energy band gap, and its conductivity can be increased by several orders of magnitude through a doping process. As a result, a power conversion efficiency of 4.15% was achieved with the doped window layer of optimized thickness. Lastly, we present significantly improved stability of the inverted devices with the MeO-TPD layer.
机译:我们报告了使用掺杂的窗户层作为光学间隔者倒的小分子有机太阳能电池。 光学间隔物用于移动活性层内部的光场分布,从而从阳光下产生更多的电荷载体。 在本报告中,将N,N,N',N'-Tetrakis(4-甲氧基苯基) - 苯胺(MEO-TPD)掺入2,2-(plutluoronaphthalene-2,6-二二二二基)二甲硝基硝硝基(F6-TCNNQ),,F6-TCNNQ,,F6-TCNNQ,, P型掺杂材料。 P掺杂的MEO-TPD被用作光学间隔物,因为它具有较大的能带隙,并且可以通过掺杂过程增加几个数量级的电导率。 结果,使用优化厚度的掺杂窗层实现了4.15%的功率转换效率。 最后,我们使用MEO-TPD层提出了倒置设备的稳定性。

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