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Highly transparent front electrodes with metal fingers for p-i-n thin-film silicon solar cells

机译:用于p-i-n薄膜硅太阳能电池的带有金属指的高度透明前电极

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The optical and electrical properties of transparent conductive oxides (TCOs), traditionally used in thin-film silicon (TF-Si) solar cells as front-electrode materials, are interlinked, such that an increase in TCO transparency is generally achieved at the cost of reduced lateral conductance. Combining a highly transparent TCO front electrode of moderate conductance with metal fingers to support charge collection is a well-established technique in wafer-based technologies or for TF-Si solar cells in the substrate (n-i-p) configuration. Here, we extend this concept to TF-Si solar cells in the superstrate (p-i-n) configuration. The metal fingers are used in conjunction with a millimeter-scale textured foil, attached to the glass superstrate, which provides an antireflective and retroreflective effect; the latter effect mitigates the shadowing losses induced by the metal fingers. As a result, a substantial increase in power conversion efficiency, from 8.7% to 9.1%, is achieved for 1-μm-thick microcrystalline silicon solar cells deposited on a highly transparent thermally treated aluminum-doped zinc oxide layer combined with silver fingers, compared to cells deposited on a state-of-the-art zinc oxide layer. b All the results presented in this work were obtained in IEK5 (Jülich). The author recently moved to EPFL (Neuchatel).
机译:传统上在薄膜硅(TF-Si)太阳能电池中用作前电极材料的透明导电氧化物(TCO)的光学和电学特性相互关联,因此通常以增加成本为代价提高TCO透明性降低横向电导。将中等电导率的高度透明的TCO前电极与金属指相结合以支持电荷收集,这是基于晶片的技术中或基板(n-i-p)构造中的TF-Si太阳能电池中公认的技术。在这里,我们将此概念扩展到上层(p-i-n)构造的TF-Si太阳能电池。金属指与附着在玻璃盖板上的毫米级纹理箔结合使用,可提供抗反射和逆反射效果。后一种效应减轻了金属指状物引起的阴影损失。结果,沉积在高度透明的经过热处理的掺铝氧化锌层上并结合了银指的1-μm厚的微晶硅太阳能电池,功率转换效率从8.7%提高到9.1%。与沉积在最先进的氧化锌层上的电池相比。 b这项工作中介绍的所有结果均在IEK5(于利希)获得。作者最近搬到了EPFL(Neuchatel)。

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