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Novel organic photovoltaic polymer blends: A rapid, 3-dimensional morphology analysis using backscattered electron imaging in the scanning electron microscope

机译:新型有机光伏聚合物共混物:在扫描电子显微镜中使用背散射电子成像的快速三维形态分析

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摘要

Finding the optimal morphology of novel organic photovoltaic (OPV) polymer blends is a major obstacle slowing the development of more efficient OPV devices. With a focus on accelerating the systematic morphology optimisation process, we demonstrate a technique offering rapid high-resolution, 3-dimensional blend morphology analysis in the scanning electron microscope. This backscattered electron imaging technique is used to investigate the morphological features and lengthscales defining the promising PffBT4T-2OD:PC70BM blend system and show how its photovoltaic performance is related to the nature of its phase separation. Low-voltage backscattered electron imaging can be used to probe for structure and domain stacking through the thickness of the film, as well as imaging surface morphology with highly competitive spatial resolution. For reference, we compare our results with equivalent images of the widely studied P3HT:PC60BM blend system. Our results also demonstrate that backscattered electron imaging offers significant advantages over conventional cross-sectional imaging techniques, and show that it enables a fast, systematic approach to control 3-dimensional active layer morphology in polymer:fullerene blends.
机译:寻找新型有机光伏(OPV)聚合物共混物的最佳形态是阻碍开发更高效的OPV器件的主要障碍。着重于加快系统形态优化过程,我们演示了一种在扫描电子显微镜中提供快速高分辨率,3维混合形态分析的技术。这种背向散射电子成像技术用于研究定义有前途的PffBT4T-2OD:PC70BM共混体系的形态特征和长度尺度,并显示其光电性能如何与其相分离的性质相关。低压背散射电子成像可用于探测薄膜厚度范围内的结构和畴堆叠,以及具有高度竞争性的空间分辨率的成像表面形态。作为参考,我们将我们的结果与经过广泛研究的P3HT:PC60BM共混系统的等效图像进行比较。我们的研究结果还表明,背向散射电子成像相对于传统的截面成像技术具有明显的优势,并且表明它可以实现一种快速,系统的方法来控制聚合物:富勒烯共混物中的3维活性层形态。

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