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Improving the performance of inverted polymer solar cells by the efficiently doping and modification of electron transport layer-ZnO

机译:通过电子传输层-ZnO的有效掺杂和改性来提高倒置聚合物太阳能电池的性能

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摘要

A novel ternary hybrid material zinc oxide & polyethyleneimine ethoxylated: reduced graphene oxide (ZnO&PEIE:RGO) is fabricated, and then used as electron transport layer (ETL) to improve the performance of inverted polymer solar cells (iPSCs). Compared with the pure ZnO as ETL, the power conversion efficiency (PCE) of iPSCs based on P3HT:PCBM blend system with ZnO&PEIE:RGO as ETL is efficiently improved from 3.00% to 3.83%. The addition of RGO increases the conductivity of ZnO, and the addition of PEIE not only passivates the surface of ZnO nanoparticles to reduce its surface defects, but also prevents the aggregation of the precursor dispersion of ZnO:RGO. Moreover, the performance of the PTB7:PCBM based iPSCs with ZnO&PEIE:RGO as ETL is also improved from 6.91% to 8.87% compared with that of the device with pure ZnO as ETL. Interestingly, devices with ZnO&PEIE:RGO also exhibit enhanced lifetimes devices with ZnO, which still retain up to 63% of their original PCE after stored for 30 days without any encapsulation in air. Consequently, this novel ternary hybrid material ZnO&PEIE:RGO is a promising ETL material for PSCs.
机译:制备了新型三元杂化材料氧化锌和聚乙烯亚胺乙氧基化还原氧化石墨烯(ZnO&PEIE:RGO),然后将其用作电子传输层(ETL)以提高倒置聚合物太阳能电池(iPSC)的性能。与纯ZnO作为ETL相比,基于P3HT:PCBM混合系统以及ZnO&PEIE:RGO作为ETL的iPSC的功率转换效率(PCE)从3.00%有效提高到3.83%。 RGO的添加增加了ZnO的电导率,而PEIE的添加不仅使ZnO纳米颗粒的表面钝化以减少其表面缺陷,而且还阻止了ZnO:RGO的前驱体分散体的聚集。此外,与以纯ZnO作为ETL的器件相比,以ZnO&PEIE:RGO作为ETL的基于PTB7:PCBM的iPSC的性能也从6.91%提高到8.87%。有趣的是,带有ZnO&PEIE:RGO的设备还具有更长的使用寿命,而带有ZnO的设备在储存30天后仍能保留高达其原始PCE的63%,而没有在空气中进行任何封装。因此,这种新颖的三元杂化材料ZnO&PEIE:RGO是用于PSC的有前途的ETL材料。

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