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Microstructured ZnO coatings combined with antireflective layers for light management in photovoltaic devices

机译:微结构化ZnO涂层与抗反射层相结合,可用于光伏设备中的光管理

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We describe microstructured ZnO coatings that improve photovoltaic (PV) device performance through their antireflective properties and their tendency to scatter incoming light at large angles. In many PV devices, reflection from the transparent conductive top contact significantly degrades performance. Traditional quarter-wave antireflective (AR) coatings reduce surface reflection but perform optimally for only a narrow spectral range and incident illumination angle. Furthermore, in some types of devices, absorption far from the junction increases the rate of recombination, and light management strategies are required to remedy this. The randomly patterned, microstructured ZnO coatings described in this paper, formed via a simple wet etch process, serve as both an AR layer with superior performance to that of a thin film AR coating alone as well as a large angle forward scatterer. We model formation of the coatings and evaluate their AR properties. When combined with a traditional quarter-wave MgF2 coating, these microstructured ZnO coatings increase short circuit currents of example Cu(In,Ga)Se-2 (CIGS) devices by over 20% in comparison to those of uncoated devices at normal incidence. A similar improvement is observed for illumination angles of up to 60 degrees. While demonstrated here for CIGS, these structures may prove useful for other PV technologies as well. Published 2016. This article is a U.S. Government work and is in the public domain in the USA. Progress in Photovoltaics: Research and Applications Published by John Wiley & Sons Ltd.
机译:我们描述了微结构化的ZnO涂层,该涂层通过其抗反射特性和大角度散射入射光的趋势来改善光伏(PV)器件的性能。在许多PV设备中,来自透明导电顶部触点的反射会大大降低性能。传统的四分之一波抗反射(AR)涂层可减少表面反射,但仅在狭窄的光谱范围和入射照明角度下才能发挥最佳性能。此外,在某些类型的设备中,远离结的吸收会增加复合速率,因此需要光管理策略来对此进行补救。通过简单的湿法刻蚀工艺形成的本文所述的随机图案化,微结构化的ZnO涂层既可作为AR层,其性能优于单独的薄膜AR涂层,也可作为大角度前向散射体。我们对涂层的形成进行建模并评估其增透性能。当与传统的四分之一波MgF2涂层结合使用时,这些微结构化的ZnO涂层使示例Cu(In,Ga)Se-2(CIGS)器件的短路电流比正常入射时未涂层的器件增加了20%以上。对于高达60度的照明角度,观察到类似的改进。虽然此处针对CIGS进行了演示,但这些结构也可能对其他PV技术也很有用。 2016年发布。本文是美国政府的工作,在美国属于公共领域。光伏技术的进展:研究与应用,John Wiley&Sons Ltd.发布

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