首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Optical modelling of the external quantum efficiency of solar cells with luminescent down-shifting layers
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Optical modelling of the external quantum efficiency of solar cells with luminescent down-shifting layers

机译:具有发光下移层的太阳能电池外部量子效率的光学建模

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摘要

Luminescent down-shifting (LDS) is an elegant, purely optical method to improve the short-wavelength response of photovoltaic (PV) modules by red-shifting the incident solar spectrum. This paper in a first step develops a simple optical model to investigate the effect of LDS layers on top of PV modules on their external quantum efficiency. A meaningful figure of merit is the LDS efficiency nLDS which quantifies the efficiency of the LDS layer to down-shift absorbed photons and send them towards the underlying solar cell. The simplified optical model developed here, extracts LDS efficiencies from experimental quantum efficiency spectra, and thereby enables assessing the current status and future potential of LDS for various solar cell technologies. Our simplified LDS model is fast, easy-to-use and universally applicable to analyze experimental LDS results. Moreover, it is especially useful for screening candidate LDS materials.
机译:发光降频(LDS)是一种优雅的纯光学方法,可通过使入射太阳光谱发生红移来改善光伏(PV)模块的短波响应。本文的第一步是开发一个简单的光学模型,以研究LDS层在PV模块顶部对其外部量子效率的影响。 LDS效率nLDS是有意义的品质因数,它可量化LDS层将吸收的光子下移并将其发送到下面的太阳能电池的效率。这里开发的简化光学模型可从实验量子效率谱中提取LDS效率,从而能够评估LDS对于各种太阳能电池技术的现状和未来潜力。我们简化的LDS模型快速,易于使用,并且普遍适用于分析实验性LDS结果。此外,它对于筛选候选LDS材料特别有用。

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