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Simple roll coater with variable coating and temperature control for printed polymer solar cells

机译:具有可变涂层和温度控制功能的简单辊涂机,适用于印刷聚合物太阳能电池

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摘要

A simple and low cost thin film solution processing system comprising a single roll coating machine has been developed to allow direct investigation of variable parameter effects in roll-to-roll processing. We present roll coating of the active layers in polymer solar cells and validate the instrument by reinvestigating the well known effect of solvent on performance. We obtained a maximum power conversion efficiency of 1.6% for the reference cells, which compares well with reported roll-to-roll coated cells according to ProcessOne, with a relative deviation caused by solvent type nearing 40% on roll coated cells, confirming the solvent to have a significant influence on the performance of the finished cell. We further present a slot-die coating head with an ultra low dead volume allowing for the preparation of roll coated polymer solar cells on flexible substrates with nearly no loss of solution, enabling roll coating testing of new polymers where only small amounts are often available. We demonstrate the formation of >50 solar cells (each with an active area of 1 cm ~2) with printed metal back electrodes using as little as 0.1 mL of active layer solution. This approach outperforms spin coating with respect to temperature control, ink usage, speed and is directly compatible with industrial processing and upscaling.
机译:已经开发了包括单个辊涂机的简单且低成本的薄膜溶液处理系统,以允许直接研究卷对卷处理中的可变参数效果。我们介绍了聚合物太阳能电池中活性层的辊涂,并通过重新研究溶剂对性能的众所周知的影响来验证该仪器。我们获得的参考电池的最大功率转换效率为1.6%,与根据ProcessOne报道的卷对卷涂层电池相比非常好,由溶剂类型引起的相对偏差在卷涂电池上接近40%,证实了溶剂对成品电池的性能有重大影响。我们进一步提出了一种具有极低死体积的狭缝模头涂布头,可以在几乎没有溶液损失的情况下在柔性基板上制备辊涂聚合物太阳能电池,从而可以在通常仅少量使用的情况下对新聚合物进行辊涂测试。我们演示了使用最少0.1 mL的活性层溶液形成的印制金属背电极即可形成> 50个太阳能电池(每个太阳能电池的活性面积为1 cm〜2)。在温度控制,油墨使用,速度方面,该方法的性能优于旋涂,并且与工业加工和放大工艺直接兼容。

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