2 research outputs found

    Ceramic Barrier Layers for Flexible Thin Film Solar Cells on Metallic Substrates: A Laboratory Scale Study for Process Optimization and Barrier Layer Properties

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    Flexible thin film solar cells are an alternative to both utility鈥恠cale and building integrated photovoltaic installations. The fabrication of these devices over electrically conducting low鈥恈ost foils requires the deposition of dielectric barrier layers to flatten the substrate surface, provide electrical isolation between the substrate and the device, and avoid the diffusion of metal impurities during the relatively high鈥恡emperatures required to deposit the rest of the solar cell device layers. The typical roughness of low鈥恈ost stainless鈥恠teel foils is in the hundred鈥恘anometer range, which is comparable or larger than the thin film layers comprising the device and this may result in electrical shunts that decrease solar cell performance. This manuscript assesses the properties of different single鈥恖ayer and bilayer structures containing ceramics inks formulations based on Al2O3, AlN or Si3N4 nanoparticles and deposited over stainless鈥恠teel foils using a rotogravure printing process. The best control of the substrate roughness was achieved for bilayers of Al2O3 or AlN with mixed particle size, which reduced the roughness and prevented the diffusion of metals impurities but AlN bilayers exhibited as well the best electrical insulation propertiesPeer reviewe
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