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Novel high-efficiency c-Si compound heterojunction solar cells: HCT (Heterojunction with Compound Thin-layer)

机译:新型高效c-Si复合异质结太阳能电池:HCT(具有复合薄层的异质结)

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A new concept of developing high-efficiency c-Si heterojunction solar cells is proposed in this work. By replacing a-Si:H thin films in HIT solar cells with appropriate compound semiconductors, we propose novel heterojunction structures which allow higher efficiency than that of HIT solar cells, and this novel type of solar cells is denominated HCT (Heterojunction with Compound Thin-layer). The compound heterojunction materials are preliminarily selected from binary semiconductors whose lattice constants, energy bands and coefficients of thermal expansion match the ones of c-Si, and their feasibilities are investigated by using a solar cell numerical modeling tool, wxAMPS. The modeling investigation indicates that HCT possess better energy band structures at hetero-interfaces than HIT. Finally, this paper concludes the compound selection standards, and suggests several novel research topics in the real device implementation of high-efficiency HCT solar cells.
机译:在这项工作中提出了开发高效c-Si异质结太阳能电池的新概念。通过用合适的化合物半导体替代HIT太阳能电池中的a-Si:H薄膜,我们提出了新颖的异质结结构,该结构比HIT太阳能电池具有更高的效率,这种新型的太阳能电池被称为HCT(具有化合物薄层的异质结)。层)。化合物异质结材料是预先从晶格常数,能带和热膨胀系数与c-Si匹配的二元半导体中选择的,并使用太阳能电池数值建模工具wxAMPS研究了它们的可行性。建模研究表明,HCT在异质界面上具有比HIT更好的能带结构。最后,本文总结了化合物选择标准,并提出了在高效HCT太阳能电池的实际设备实现中的一些新颖的研究主题。

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