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Upscaling of Perovskite Solar Cells: Fully Ambient Roll Processing of Flexible Perovskite Solar Cells with Printed Back Electrodes

机译:钙钛矿太阳能电池的升级:带有印刷背电极的柔性钙钛矿太阳能电池的全环境辊式加工

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摘要

A scaling effort on perovskite solar cells is presented where the device manufacture is progressed onto flexible substrates using scalable techniques such as slot-die roll coating under ambient conditions. The printing of the back electrode using both carbon and silver is essential to the scaling effort. Both normal and inverted device geometries are explored and it is found that the formation of the correct morphology for the perovskite layer depends heavily on the surface upon which it is coated and this has significant implications for manufacture. The time it takes to form the desired layer morphology falls in the range of 5–45 min depending on the perovskite precursor, where the former timescale is compatible with mass production and the latter is best suited for laboratory work. A significant loss in solar cell performance of around 50% is found when progressing to using a fully scalable fabrication process, which is comparable to what is observed for other printable solar cell technologies such as polymer solar cells. The power conversion efficiency (PCE) for devices processed using spin coating on indium tin oxide (ITO)-glass with evaporated back electrode yields a PCE of 9.4%. The same device type and active area realized using slot-die coating on flexible ITO-polyethyleneterphthalate (PET) with a printed back electrode gives a PCE of 4.9%.
机译:提出了钙钛矿太阳能电池的规模化工作,其中使用可扩展技术(例如在环境条件下进行狭缝模头辊涂)将器件制造进展到柔性基板上。同时使用碳和银印刷背面电极对于结垢工作至关重要。研究了正常和倒置装置的几何形状,并且发现钙钛矿层的正确形态的形成在很大程度上取决于其所涂覆的表面,这对制造具有重要意义。取决于钙钛矿前体,形成所需层形态所需的时间在5–45分钟范围内,前者与大规模生产兼容,后者最适合实验室工作。当发展为使用完全可扩展的制造工艺时,发现太阳能电池性能的重大损失约为50%,这与其他可印刷太阳能电池技术(例如聚合物太阳能电池)所观察到的情况相当。使用在带有蒸发后电极的氧化铟锡(ITO)玻璃上旋涂处理的器件的功率转换效率(PCE)产生9.4%的PCE。在具有印刷后电极的柔性ITO-聚对苯二甲酸乙二醇酯(PET)上使用狭缝模头涂层实现的相同器件类型和有效面积,其PCE为4.9%。

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