高效Nc-Si /uc-Si串联太阳能电池的仿真研究

Fengxiang Chen, Wenying Xu, Lisheng Wang, Yingyan Yi
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摘要

为了提高薄膜太阳能电池的转换效率,采用串联技术吸收太阳光谱。由于纳米晶硅薄膜具有良好的光敏性、良好的吸收系数和在光浸泡下的稳定性等特点,有望在串联太阳能电池中取代非晶硅成为顶级太阳能电池。本文通过仿真对nc-Si/uc-Si串联太阳能电池进行了优化设计。仿真结果表明,顶电池的带隙对串联电池的转换效率有重要影响。当带隙从1.8eV增加到2.1eV时,效率可提高3个百分点以上。同时还讨论了底部单元、隧道结的影响。
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Simulation of High Efficiency Nc-Si /uc-Si Tandem Solar Cells
In order to improve the conversion efficiency of thin film solar cells, tandem technology is used to absorb the solar spectrum. Since nano-crystalline silicon film has the characteristic of good photosensitivity, good absorption coefficient and stability under light soak, this thin film is expected to replace the amorphous silicon as the top solar cell in tandem solar cells. In this paper, the nc-Si/uc-Si tandem solar cell was optimized by simulation. The simulation results show that the band gap of the top cell has very important influence on the conversion efficiency of the tandem cell. When the band gap increases from 1.8eV to 2.1eV, the efficiency can be raised more than 3 percentage points. And the influences of the bottom cell, the tunneling junction are also discussed.
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