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A generic concept to overcome bandgap limitations for designing highly efficient multi-junction photovoltaic cells

机译:克服带隙限制的通用概念,用于设计高效的多结光伏电池

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The multi-junction concept is the most relevant approach to overcome the Shockley-Queisser limit for single-junction photovoltaic cells. The record efficiencies of several types of solar technologies are held by series-connected tandem configurations. However, the stringent current-matching criterion presents primarily a material challenge and permanently requires developing and processing novel semiconductors with desired bandgaps and thicknesses. Here we report a generic concept to alleviate this limitation. By integrating series-and parallel-interconnections into a triple-junction configuration, we find significantly relaxed material selection and current-matching constraints. To illustrate the versatile applicability of the proposed triple-junction concept, organic and organic-inorganic hybrid triple-junction solar cells are constructed by printing methods. High fill factors up to 68% without resistive losses are achieved for both organic and hybrid triple-junction devices. Series/parallel triple-junction cells with organic, as well as perovskite-based subcells may become a key technology to further advance the efficiency roadmap of the existing photovoltaic technologies.
机译:多结点概念是克服单结点光伏电池的Shockley-Queisser限制的最相关方法。串联连接的串联配置保持了几种太阳能技术的创纪录效率。然而,严格的电流匹配标准主要提出了材料挑战,并永久需要开发和处理具有所需带隙和厚度的新型半导体。在这里,我们报告一个通用的概念来减轻这种限制。通过将串联和并联互连集成到三结配置中,我们发现材料选择和电流匹配约束明显放宽。为了说明所提出的三结概念的通用性,通过印刷方法构建了有机和有机-无机混合三结太阳能电池。有机和混合三结器件均实现了高达68%的高填充因子而没有电阻损耗。具有有机以及基于钙钛矿的子电池的串联/并联三结电池可能成为进一步推进现有光伏技术效率路线图的关键技术。

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