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Toward Improved Lifetimes of Organic Solar Cells under Thermal Stress: Substrate-Dependent Morphological Stability of PCDTBT:PCBM Films and Devices

机译:改善热应力下有机太阳能电池的使用寿命:PCDTBT:PCBM薄膜和器件的基质依赖性形态稳定性

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摘要

Morphological stability is a key requirement for outdoor operation of organic solar cells. We demonstrate that morphological stability and lifetime of polymer/fullerene based solar cells under thermal stress depend strongly on the substrate interface on which the active layer is deposited. In particular, we find that the stability of benchmark PCDTBT/PCBM solar cells under modest thermal stress is substantially increased in inverted solar cells employing a ZnO substrate compared to conventional devices employing a PEDOT:PSS substrate. This improved stability is observed to correlate with PCBM nucleation at the 50 nm scale, which is shown to be strongly influenced by different substrate interfaces. Employing this approach, we demonstrate remarkable thermal stability for inverted PCDTBT:PC70BM devices on ZnO substrates, with negligible (<2%) loss of power conversion efficiency over 160 h under 85 °C thermal stress and minimal thermally induced “burn-in” effect. We thus conclude that inverted organic solar cells, in addition to showing improved environmental stability against ambient humidity exposure as widely reported previously, can also demonstrate enhanced morphological stability. As such we show that the choice of suitable substrate interfaces may be a key factor in achieving prolonged lifetimes for organic solar cells under thermal stress conditions.
机译:形态稳定性是有机太阳能电池在室外运行的关键要求。我们证明了在热应力下基于聚合物/富勒烯的太阳能电池的形态稳定性和寿命在很大程度上取决于其上沉积有活性层的衬底界面。特别地,我们发现,与采用PEDOT:PSS基板的传统器件相比,采用ZnO基板的倒置太阳能电池中基准PCDTBT / PCBM太阳能电池在适度的热应力下的稳定性大大提高。观察到这种改善的稳定性与50Mnm规模的PCBM成核作用有关,这被不同的基材界面强烈影响。利用这种方法,我们证明了在ZnO衬底上倒置的PCDTBT:PC70BM器件具有出色的热稳定性,在85 C的热应力下,在160 h内功率转换效率的损失可忽略不计(<2%),并且热诱导的“烙印”效应最小。因此,我们得出的结论是,倒置有机太阳能电池除了显示出针对先前广泛报道的针对环境湿度的改善的环境稳定性外,还可以显示出增强的形态稳定性。因此,我们表明,在热应力条件下,选择合适的基板界面可能是延长有机太阳能电池寿命的关键因素。

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