Low temperature aggregation transitions in N3 and Y6 acceptors enable double-annealing method that yields hierarchical morphology and superior efficiency in nonfullerene organic solar cells

Yunpeng Qin, Ye Xu, Zhengxing Peng, Jianhui Hou, H. Ade
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引用次数: 2

Abstract

Thermal transition of OSCs constituent materials are often insufficiently researched, resulting in trial-and-error rather than rational approaches to post-casting processing strategies to improve aggregation to enhance the power conversion efficiency. Despite the potential utility, little is known about the thermal transitions of the high-performance acceptors. Here, by using an optical method, we discover that the acceptor N3 has a clear solid-state aggregation transition at 82 °C. The transition informs and enables a double-annealing method that can fine‐tune aggregation and the device morphology. Compared with 16.6% efficiency for the control devices, higher efficiency of 17.6% is obtained through the improved protocol. Design of high-performance acceptors with yet lower aggregation transitions might be required to successfully transition to low thermal budget industrial processing methods where annealing temperatures on plastic substrates have to be kept low.
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N3和Y6受体的低温聚集转变使双退火方法能够在非富勒烯有机太阳能电池中产生分层结构和优越的效率
OSCs组成材料的热转变研究往往不够充分,导致铸造后加工策略的试错而不是合理的方法来改善聚集以提高功率转换效率。尽管有潜在的效用,但人们对高性能受体的热转变知之甚少。在这里,通过光学方法,我们发现受体N3在82°C时具有明显的固态聚集转变。这种转变告知并实现了一种双退火方法,该方法可以微调聚合和器件形态。与控制装置16.6%的效率相比,改进方案的效率达到了17.6%。设计具有更低聚集转变的高性能受体可能需要成功地过渡到低热预算工业处理方法,其中塑料基板上的退火温度必须保持较低。
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