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An organic-inorganic hybrid interlayer for improved electron extraction in inverted polymer solar cells

机译:用于改善倒置聚合物太阳能电池中电子提取的有机-无机杂化中间层

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摘要

We fabricated inverted polymer solar cells (PSCs) using an organic-inorganic hybrid interlayer for electron extraction. The surface energy and surface defects of an organic-inorganic ZnO-PFN hybrid film, which was prepared by dissolving the conjugated polymer electrolyte poly[(9,9-bis(30-(N,N-dimethylamino)propyl)-2,7-fluorene)-alt-2,7-(9,9-dioctyl-fluorene)] (PFN) in a ZnO solution, were reduced, compared to ZnO film. By introducing the ZnO-PFN electron extraction layer, the interfacial contact between the active and electron extraction layers was improved and the series resistance of the PSC device was decreased. As a result, electron extraction from the active layer to the electrode was enhanced. The highest power conversion efficiency (PCE) of the inverted PSCs was 9.2%. Moreover, the ZnO-PFN-based inverted PSCs showed improved long-term stability compared to ZnO-based devices. The ZnO-PFN interlayer aimed to overcome the drawbacks of the conventional hydrophilic surface of ZnO, based on the properties of the conjugated polymer (PFN) without the need for additional processes. It was therefore simple to fabricate the inverted PSCs, making the devices commercially viable.
机译:我们使用有机-无机杂化中间层进行电子提取,制造了反向聚合物太阳能电池(PSC)。通过溶解共轭聚合物电解质聚[(9,9-双(30-(N,N-二甲基氨基)丙基)-2,7]制备的有机-无机ZnO-PFN杂化膜的表面能和表面缺陷与ZnO膜相比,ZnO溶液中的(芴)-alt-2,7-(9,9-二辛基-芴)](PFN)减少了。通过引入ZnO-PFN电子提取层,可以改善有源层和电子提取层之间的界面接触,并降低PSC器件的串联电阻。结果,增强了从活性层到电极的电子提取。反向PSC的最高功率转换效率(PCE)为9.2%。此外,与基于ZnO的器件相比,基于ZnO-PFN的反向PSC显示出改善的长期稳定性。 ZnO-PFN中间层旨在基于共轭聚合物(PFN)的特性克服常规ZnO亲水表面的缺点,而无需其他工艺。因此,制造倒置的PSC非常简单,从而使该器件在商业上可行。

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