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Impact of inkjet printed ZnO electron transport layer on the characteristics of polymer solar cells

机译:喷墨印刷的ZnO电子传输层对聚合物太阳能电池特性的影响

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摘要

In this paper, we demonstrate that zinc oxide (ZnO) layers deposited by inkjet printing (IJP) can be successfully applied to the low-temperature fabrication of efficient inverted polymer solar cells (i-PSCs). The effects of ZnO layers deposited by IJP as electron transport layer (ETL) on the performance of i-PSCs based on PTB7-Th:PC _(70) BM active layers are investigated. The morphology of the ZnO-IJP layers was analysed by AFM, and compared to that of ZnO layers deposited by different techniques. The study shows that the morphology of the ZnO underlayer has a dramatic effect on the band structure and non-geminate recombination kinetics of the active layer deposited on top of it. Charge carrier and transient photovoltage measurements show that non-geminate recombination is governed by deep trap states in devices made from ZnO-IJP while trapping is less significant for other types of ZnO. The power conversion efficiency of the devices made from ZnO-IJP is mostly limited by their slightly lower J _(SC) , resulting from non-optimum photon conversion efficiency in the visible part of the solar spectrum. Despite these minor limitations their J – V characteristics compare very favourably with that of devices made from ZnO layer deposited using different techniques.
机译:在本文中,我们证明了通过喷墨印刷(IJP)沉积的氧化锌(ZnO)层可以成功地应用于高效反向聚合物太阳能电池(i-PSC)的低温制造。研究了由IJP作为电子传输层(ETL)沉积的ZnO层对基于PTB7-Th:PC _(70)BM有源层的i-PSC的性能的影响。通过AFM分析ZnO-IJP层的形态,并与通过不同技术沉积的ZnO层的形态进行比较。研究表明,ZnO底层的形貌对沉积在其上的活性层的能带结构和非双键重组动力学具有显着影响。电荷载流子和瞬态光电压的测量结果表明,由ZnO-IJP制成的器件中的非陷阱重组受深陷阱状态的支配,而其他类型的ZnO的陷阱作用则不那么明显。由ZnO-IJP制成的器件的功率转换效率主要受其J_(SC)稍低的限制,这是由于太阳光谱可见光部分的非最佳光子转换效率所致。尽管存在这些微小的限制,但它们的J–V特性​​却与采用不同技术沉积的ZnO层制成的器件相比非常有利。

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