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Device architectures with nanocrystalline mesoporous scaffolds and thin compact layers for flexible perovskite solar cells and modules

机译:具有纳米晶体中孔脚手架的装置架构和柔性Perovskite太阳能电池和模块的薄紧凑层

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Hybrid organometallic halide perovskite photovoltaics has seen remarkable growth in world wide research and power conversion efficiencies (PCEs) over the last two years. Key advantages of perovskites devices, together with high PCEs typical of inorganic semiconductors, are represented by the ease of deposition of the precursors of the perovskite (via ink solutions) and their low temperature processing (<; 140°C), more typical of organic semiconductors. These values enable coating the active layers on plastic substrates, which can make the technology compatible with continuous roll to roll manufacturing. Flexible photovoltaics is drawing strong interest as it can also bring advantages to applications where flexibility, conformability, and being lightweight and easy-to-integrate are sought. Development of the technology on flexible substrates is far from trivial. Especially important is identifying materials and techniques that are low-temperature and compatible with plastic films even for the other components of the cell like the nanometer-thin electron extraction/blocking layers and the mesoporous nanocrystalline scaffolds. We will present effective strategies and formulations that enable the realization of efficient flexible perovskite cells and the first ever CHNHPbICl perovskite module on plastic film.
机译:Hybrid Organom金属卤化物Perovskite Photovoltaics在过去两年中,世界范围内的研究和电力转换效率(PCE)在近两年中看到了显着增长。 Perovskites器件的主要优点与无机半导体的典型高pces一起由钙钛矿前体(通过油墨溶液)的沉积和它们的低温处理(<; 140°C),更典型的有机物沉积来表示半导体。这些值使得在塑料基材上涂覆有源层,这可以使技术与连续辊兼容以滚动制造。灵活的光伏是强烈的兴趣,因为它还可以为柔韧性,适当性和轻质和轻质和易于整合的应用带来优势。柔性基板上的技术的开发远非琐碎。特别重要的是识别低温的材料和技术,即使对于纳米薄电子提取/阻挡层和中孔纳米晶支架等的电池的其他组分,也可以与塑料薄膜相容。我们将提出有效的策略和制剂,使能有效的柔性钙钛矿细胞和塑料薄膜中的第一个CHNHPBICL Perovskite模块。

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