首页> 外文期刊>Progress in photovoltaics >Roll-to-roll gravure printing of organic photovoltaic modulesinsulation of processing defects by an interfacial layer
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Roll-to-roll gravure printing of organic photovoltaic modulesinsulation of processing defects by an interfacial layer

机译:卷式凹版印刷有机光伏模块通过界面层隔离处理缺陷

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Gravure printing as direct patterning roll-to-roll (R2R) production technology can revolutionize the design of thin-film organic photovoltaic (OPV) devices by allowing feasible manufacturing of arbitrary-shaped modules. This makes a distinction to coating methods, such as slot die coating, in which the pattern is limited to continuous stripes. Here, we analyze the thin-film formation and its influence on OPV module performance as the gravure printing of hole transport and photoactive layers are transferred from laboratory to R2R pilot production environment. Insertion of a 0.8-nm layer of lithium fluoride (LiF) as an interfacial layer between the active layer and the electron contact provided insulation against the detrimental pinholes formed in the R2R printing process. Using this device configuration, we produced well-performing R2R-printed monolithic modules with a mean efficiency of 1.7%. In comparison, reference modules with an efficiency of 2.2% were fabricated using laboratory-scale bench top sheet-level process. Surface energy and tension measurements together with optical microscopy were used to analyze the printability of the materials. The pinhole insulation was investigated in detail by processing R2R-printed OPV modules with different interfacial layer materials and performing electrical measurements under dark and AM1.5 illumination conditions. Furthermore, we analyzed the LiF distribution using X-ray photoelectron spectroscopy. The insulating nature of the LiF layer to improve module performance was confirmed by manufacturing lithographically artificial pinholes in device structures. The results show the possibility to loosen the production environment constraints and the feasibility of fabricating well-performing thin-film devices by R2R gravure printing. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:凹版印刷作为直接图案化卷对卷(R2R)生产技术,通过允许可行地制造任意形状的模块,可以彻底改变薄膜有机光伏(OPV)器件的设计。这与涂布方法(例如缝模涂布)不同,在涂布方法中,图案仅限于连续的条纹。在这里,我们分析了空穴传输和光敏层的凹版印刷已从实验室转移到R2R中试生产环境时,薄膜的形成及其对OPV模块性能的影响。在有源层和电子触点之间插入0.8 nm的氟化锂(LiF)界面层作为绝缘层,可抵御R2R印刷过程中形成的有害针孔。使用这种设备配置,我们生产了性能良好的R2R印刷单片模块,平均效率为1.7%。相比之下,使用实验室规模的台式工作流程制造的参考模块的效率为2.2%。使用表面能和张力测量以及光学显微镜来分析材料的可印刷性。通过用不同的界面层材料处理R2R印刷的OPV模块并在黑暗和AM1.5照明条件下进行电测量,详细研究了针孔绝缘。此外,我们使用X射线光电子能谱分析了LiF分布。通过在器件结构中制造光刻人工针孔,可以确认LiF层具有改善模块性能的绝缘特性。结果表明,可以放松生产环境的限制,并可以通过R2R凹版印刷制造性能良好的薄膜器件。版权所有(c)2014 John Wiley&Sons,Ltd.

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