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High-Efficiency Small Molecule-Based Bulk-Heterojunction Solar Cells Enhanced by Additive Annealing

机译:通过附加退火增强的高效小分子基体异质结太阳能电池

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Solvent additive processing is important in optimizing an active layer's morphology and thus improving the performance of organic solar cells (OSCs). In this study, we find that how 1,8-diiodooctane (DIO) additive is removed plays a critical role in determining the film morphology of the bulk heterojunction OSCs in inverted structure based on a porphyrin small molecule. Different from the cases reported for polymer-based OSCs in conventional structures, the inverted OSCs upon the quick removal of the additive either by quick vacuuming or methanol washing exhibit poorer performance. In contrast, the devices after keeping the active layers in ambient pressure with additive dwelling for about 1 h (namely, additive annealing) show an enhanced power conversion efficiency up to 7.78% with a large short circuit current of 19.25 mA/cm 2, which are among the best in small molecule-based solar cells. The detailed morphology analyses using UV-vis absorption spectroscopy, grazing incidence X-ray diffraction, resonant soft X-ray scattering, and atomic force microscopy demonstrate that the active layer shows smaller-sized phase separation but improved structure order upon additive annealing. On the contrary, the quick removal of the additive either by quick vacuuming or methanol washing keeps the active layers in an earlier stage of large scaled phase separation.
机译:溶剂添加剂处理对于优化活性层的形态并因此改善有机太阳能电池(OSC)的性能非常重要。在这项研究中,我们发现如何去除1,8-二碘辛烷(DIO)添加剂在确定基于卟啉小分子的反向结构中的本体异质结OSC的膜形态方面起着至关重要的作用。与常规结构中基于聚合物的OSC报道的情况不同,通过快速抽真空或甲醇洗涤快速去除添加剂后,倒置的OSC表现出较差的性能。相比之下,在将有源层保持在环境压力下并进行添加剂停留约1小时(即添加剂退火)后,该器件在高达19.25 mA / cm 2的大短路电流下,其功率转换效率提高了7.78%。在基于小分子的太阳能电池中是最好的。使用紫外可见吸收光谱,掠入射X射线衍射,共振软X射线散射和原子力显微镜的详细形态分析表明,活性层​​显示出较小的相分离,但经过加成退火后,结构顺序得到改善。相反,通过快速抽真空或甲醇洗涤快速去除添加剂,使活性层处于大规模相分离的早期阶段。

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