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Describing the light intensity dependence of polymer:fullerene solar cells using an adapted Shockley diode model

机译:使用改进的肖克利二极管模型描述聚合物:富勒烯太阳能电池的光强度依赖性

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摘要

Solar cells are generally optimised for operation under AM1.5 100 mW cm~(-2) conditions. This is also typically done for polymer solar cells. However, one of the entry markets for this emerging technology is portable electronics. For this market, the spectral shape and intensity of typical illumination conditions deviate considerably from the standard test conditions (AM1.5, 100 mW cm~(-2), at 25 °C). The performance of polymer solar cells is strongly dependent on the intensity and spectral shape of the light source. For this reason the cells should be optimised for the specific application. Here a theoretical model is presented that describes the light intensity dependence of P3HT:[C60]PCBM solar cells. It is based on the Shockley diode equation, combined with a metal-insulator-metal model. In this way the observed light intensity dependence of P3HT:[C60]PCBM solar cells can be described using a 1-diode model, allowing fast optimization of polymer solar cells and module design.
机译:太阳能电池通常被优化用于在AM1.5 100 mW cm〜(-2)条件下运行。通常也对聚合物太阳能电池进行此操作。但是,便携式电子是这一新兴技术的进入市场之一。对于这个市场,典型照明条件的光谱形状和强度与标准测试条件(AM1.5,100 mW cm〜(-2),在25°C下)有很大差异。聚合物太阳能电池的性能在很大程度上取决于光源的强度和光谱形状。因此,应针对特定应用优化单元。这里提出了一个理论模型,该模型描述了P3HT:[C60] PCBM太阳能电池的光强度依赖性。它基于肖克利二极管方程,并结合了金属-绝缘体-金属模型。这样,可以使用1二极管模型描述观察到的P3HT:[C60] PCBM太阳能电池的光强度依赖性,从而可以快速优化聚合物太阳能电池和模块设计。

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