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In Operando GISAXS and GIWAXS Stability Study of Organic Solar Cells Based on PffBT4T‐2OD:PC71BM with and without Solvent Additive

机译:在Operando Gisax和Giwaxs基于PFFBT4T-2D的有机太阳能电池的稳定性研究:PC71BM没有溶剂添加剂

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摘要

Solvent additives are known to modify the morphology of bulk heterojunction active layers to achieve high efficiency organic solar cells. However, the knowledge about the influence of solvent additives on the morphology degradation is limited. Hence, in operando grazing‐incidence small and wide angle X‐ray scattering (GISAXS and GIWAXS) measurements are applied on a series of PffBT4T‐2OD:PC BM‐based solar cells prepared without and with solvent additives. The solar cells fabricated without a solvent additive, with 1,8‐diiodoctane (DIO), and with ‐chlorobenzaldehyde (CBA) additive show differences in the device degradation and changes in the morphology and crystallinity of the active layers. The mesoscale morphology changes are correlated with the decay of the short‐circuit current and the evolution of crystalline grain sizes is codependent with the decay of open‐circuit voltage . Without additive, the loss in dominates the degradation, whereas with solvent additive (DIO and CBA) the loss in rules the degradation. CBA addition increases the overall device stability as compared to DIO or absence of additive.
机译:已知溶剂添加剂改变散装异质结的形态,以实现高效有机太阳能电池。然而,关于溶剂添加剂对形态降解影响的知识是有限的。因此,在Operando放牧 - 发病率小而广角X射线散射(GiSaxs和Giwaxs)测量施加在一系列PFFBT4T-2D:基于PC BM的太阳能电池,而没有溶剂添加剂。在没有溶剂添加剂的情况下制造的太阳能电池,用1,8-二极管(DIO)和 - 氯苯甲醛(CBA)添加剂,显示器的差异劣化和活性层的形态和结晶度的变化。 Mescle形态变化与短路电流的衰减相关 结晶晶粒尺寸的演变是具有开路电压衰减的信心依赖性 。没有添加剂,损失 占解脱的降解,而溶剂添加剂(DIO和CBA)的损失 缩减劣化。与DIO或没有添加剂相比,CBA添加增加了整体装置稳定性。

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