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Comparison of large scale coating techniques for organic and hybrid films in polymer based solar cells

机译:聚合物太阳能电池中有机膜和杂化膜的大规模涂覆技术比较

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摘要

Polymer based solar cells (PSC) can be manufactured in a continuous roll to roll process as a low cost regenerative energy source. Coating ink properties and film thicknesses of 30-200 nm are challenging with respect to the manufacturing process, which itself has an important impact on film properties and cell efficiencies. In this paper we compare the large area coating methods: knife coating, slot-die coating, and spray coating with laboratory spin coating. Properties of coating inks and a viscosity model for commercial PEDOT: PSS types are discussed. The significantly smaller viscosity to surface tension ratio, of typical coating inks for PSC compared to conventional coating inks, causes a different behavior during the coating process. Wet film thickness, homogeneity, and process stability and their dependence on process parameters are addressed for each coating method. Hole-conductive and photoactive layers, consisting of polymer-fullerene and polymer-nanoparticle blends, are then compared with respect to homogeneity, AFM topography and absorption spectra. First results indicate that the coating method itself has an impact on polymer-fullerene film morphology and opto-electric properties.
机译:聚合物基太阳能电池(PSC)可以以连续卷对卷的方式制造,作为低成本的再生能源。就制造工艺而言,涂料油墨的性能和30-200 nm的膜厚度具有挑战性,这本身对膜性能和电池效率具有重要影响。在本文中,我们比较了大面积涂覆方法:刮刀涂覆,狭缝模头涂覆和实验室旋涂的喷涂。讨论了商用PEDOT的涂料油墨性能和粘度模型:PSS类型。与传统的涂料油墨相比,用于PSC的典型涂料油墨的粘度与表面张力之比显着较小,从而在涂布过程中产生了不同的行为。对于每种涂覆方法,都解决了湿膜厚度,均匀性和工艺稳定性及其对工艺参数的依赖性。然后,将由聚合物-富勒烯和聚合物-纳米颗粒共混物组成的空穴传导层和光敏层的均匀性,AFM形貌和吸收光谱进行比较。初步结果表明,涂​​覆方法本身会对聚合物-富勒烯薄膜的形貌和光电性能产生影响。

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