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Inkjet printing of carrier transport layers for inverted organic solar cells

机译:用于反向有机太阳能电池的载流子传输层的喷墨印刷

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Inverted organic solar cells, which utilize a transparent cathode and a high work function metal anode, have been the subject of extensive research. Their advantages over conventional organic solar cells include increased resistance to environmental degradation and compatibility with large area fabrication techniques. Carrier transport layers are essential for achieving high power conversion efficiencies in inverted organic solar cells and therefore need to be compatible with these large area fabrication techniques. Inkjet printing is one such technique that can be integrated into the low cost mass production of these cells via roll to roll fabrication. N-type metal oxides such as ZnO or zinc tin oxide (ZTO) have been previously used as electron transport layers for inverted cells, but only as spin coated films. We have developed inkjet printable ZTO solutions for use as electron transport layers in inverted organic solar cells, and achieve power conversion efficiencies of over 3% in inverted P3HT:PC_(71)BM solar cells. We also discuss the effect of printing parameters on the electrical performance of these layers in inverted organic solar cells.
机译:利用透明阴极和高功函数金属阳极的倒置有机太阳能电池已经成为广泛研究的主题。与常规有机太阳能电池相比,它们的优势包括对环境退化的抵抗力增强以及与大面积制造技术的兼容性。载流子传输层对于在反向有机太阳能电池中实现高功率转换效率至关重要,因此需要与这些大面积制造技术兼容。喷墨印刷是一种这样的技术,其可以通过卷对卷制造被集成到这些电池的低成本批量生产中。诸如ZnO或氧化锌锡(ZTO)之类的N型金属氧化物先前已用作倒装电池的电子传输层,但仅用作旋涂膜。我们已经开发出可喷墨印刷的ZTO解决方案,用作反向有机太阳能电池中的电子传输层,并且在反向P3HT:PC_(71)BM太阳能电池中实现了超过3%的功率转换效率。我们还将讨论印刷参数对反向有机太阳能电池中这些层的电性能的影响。

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