首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Roll and roll-to-roll process scaling through development of a compact flexo unit for printing of back electrodes
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Roll and roll-to-roll process scaling through development of a compact flexo unit for printing of back electrodes

机译:通过开发用于印刷背面电极的紧凑型柔印单元来进行卷对卷工艺缩放

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We report manufacture of fully printed and coated polymer solar cells on a small scale roll-to-roll coater representing the intermediate scale between laboratory and pilot scale. We highlight the enormous span in scale between the laboratory scale and the intended industrial scale by a factor of > 100.000 and detail how this enormous scale must be covered by equipment that follow the scale. Especially the intermediate scale between equipment that can fit inside a fume cupboard and the typical pilot equipment with a footprint having the size of a large room presents a challenge that comprises some of the most critical steps in the scaling process. We describe the development of such a machine that comprise web guiding, tension control and surface treatment in a compact desk size that is easily moved around and also detail the development of a small cassette based flexographic unit for back electrode printing that is parsimonious in terms of ink usage and more gentle than laboratory scale flexo units where the foil transport is either driven by the flexo unit or the flexo unit is driven by the foil transport. We demonstrate fully operational flexible polymer solar cell manufacture using this new roll and roll-to-roll (R3) approach and compare with the existing methods. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们报告了在小规模的卷对卷涂布机上制造完全印刷和涂覆的聚合物太阳能电池的过程,代表了实验室规模与中试规模之间的中间规模。我们强调了实验室规模和预期的工业规模之间的巨大跨度,其范围大于100.000,并且详细说明了如何使用这种规模的设备来覆盖这种巨大规模。尤其是,可以安装在通风橱内的设备与占地空间较大的典型飞行员设备之间的中间秤面临着挑战,其中包括缩放过程中一些最关键的步骤。我们描述了这样一种机器的开发,该机器在易于移动的紧凑的桌面尺寸中包括卷筒纸引导,张力控制和表面处理,并且还详细介绍了用于背面电极印刷的基于小型暗盒的柔性版印刷机的开发,该印刷机具有以下优点:油墨使用量比实验室规模的柔印单元柔和,后者的箔纸运输是由柔印单元驱动的,或者柔印单元是由箔纸运输驱动的。我们演示了使用这种新的卷对卷(R3)方法的完全可操作的柔性聚合物太阳能电池制造方法,并与现有方法进行了比较。 (C)2015 Elsevier B.V.保留所有权利。

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