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Minority carrier collection in CuGaSe_2 solar cells

机译:CuGaSe_2太阳能电池中的少数载流子收集

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摘要

The photovoltaic performance of CuGaSe_2 thin-film solar cells is limited by their relatively low open circuit voltage and by poor carrier collection that reduces the short circuit current of these devices. In addition, the photocurrent exhibits a strong voltage dependence that additionally degrades the fill factor of the solar cell. This contribution provides an experimental investigation of the spectral quantum efficiency (QE) of CuGaSe_2 solar cells with and without bias voltage. Experimentally, we find two different types of current collection in CuGaSe_2 solar cells. In the first case, application of reverse bias voltage leads to an increase of the QE in the long wavelength regime. This behaviour results from the increase of carrier collection by increasing the space charge region. Other cells, though having as well a low response in the long wavelength regime of the QE spectra, do not exhibit a strong voltage dependence of carrier collection. In these cells, a part of the absorber material appears not to contribute to the photocurrent at all.
机译:CuGaSe_2薄膜太阳能电池的光伏性能受到其相对较低的开路电压和不良的载流子收集的限制,载流子收集减少了这些设备的短路电流。另外,光电流表现出强烈的电压依赖性,这进一步降低了太阳能电池的填充因子。这一贡献为使用和不使用偏压的CuGaSe_2太阳能电池的光谱量子效率(QE)提供了实验研究。通过实验,我们在CuGaSe_2太阳能电池中发现了两种不同类型的电流收集。在第一种情况下,施加反向偏置电压会导致长波长状态下的QE增大。此行为是由于通过增加空间电荷区域而增加了载流子收集。其他单元尽管在QE光谱的长波长范围内响应也很低,但对载流子收集的电压依赖性不强。在这些电池中,吸收材料的一部分似乎根本不贡献光电流。

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