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An Electrode Design Rule for Organic Photovoltaics Elucidated Using a Low Surface Area Electrode

机译:使用低表面积电极阐明的有机光伏电极设计规则

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摘要

It is widely considered that charge carrier extraction in bulk-heterojunction organic photovoltaics (BHJ OPVs) is most efficient when the area of contact between the semiconductor layers and the electrodes is maximized and the electrodes are electrically homogeneous. Herein, it is shown that approximate to 99% of the electrode surface can in fact be insulating without degrading the efficiency of charge carrier extraction, provided the spacing of the conducting areas is less than or equal to twice the optimal thickness of the BHJ layer. This striking result is demonstrated for BHJ OPVs with both conventional and inverted device architectures using two different types of BHJ OPVs, namely, PCDTBT:PC70BM and the ternary blend PBDB-T:ITIC-m:PC70BM. This finding opens the door to the use of a large pallet of materials for optical spacers and charge transport layers, based on a low density of conducting particles embedded in a wide bandgap insulating matrix.
机译:人们普遍认为,当半导体层和电极之间的接触面积最大且电极电均质时,体异质结有机光伏(BHJ OPV)中的载流子提取效率最高。在此示出,只要导电区域的间距小于或等于BHJ层的最佳厚度的两倍,则实际上约99%的电极表面实际上可以绝缘而不降低电荷载流子提取的效率。对于使用两种不同类型的BHJ OPV,即PCDTBT:PC70BM和三元共混物PBDB-T:ITIC-m:PC70BM的常规设备和倒置设备架构的BHJ OPV,都证明了这一惊人的结果。这一发现为在宽间隔绝缘矩阵中嵌入低密度导电颗粒的基础上,将大量材料用于光学垫片和电荷传输层打开了大门。

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