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Numerical Analysis of Novel Back Surface Field for High Efficiency Ultrathin CdTe Solar Cells

机译:高效超薄CdTe太阳能电池新型背面场的数值分析

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摘要

This paper numerically explores the possibility of high efficiency, ultrathin, and stable CdTe cells with different back surface field (BSF) using well accepted simulator AMPS-1D (analysis of microelectronics and photonic structures). A modified structure of CdTe based PV cell SnO2/Zn2SnO4/CdS/CdTe/BSF/BC has been proposed over reference structure SnO2/Zn2SnO4/CdS/CdTe/Cu. Both higher bandgap materials like ZnTe and Cu2Te and low bandgap materials like As2Te3 and Sb2Te3 have been used as BSF to reduce minority carrier recombination loss at the back contact in ultra-thin CdTe cells. In this analysis the highest conversion efficiency of CdTe based PV cell without BSF has been found to be around 17% using CdTe absorber thickness of 5 μm. However, the proposed structures with different BSF have shown acceptable efficiencies with an ultra-thin CdTe absorber of only 0.6 μm. The proposed structure with As2Te3 BSF showed the highest conversion efficiency of 20.8% ( V,  mA/cm2, and ). Moreover, the proposed structures have shown improved stability in most extents, as it was found that the cells have relatively lower negative temperature coefficient. However, the cell with ZnTe BSF has shown better overall stability than other proposed cells with temperature coefficient (TC) of −0.3%/°C.
机译:本文使用良好的良好接受的模拟器AMPS-1D(微电子和光子结构分析),数值探讨了具有不同背面(BSF)的高效率,超薄和稳定的CDTE细胞的可能性(BSF)(微电子和光子结构的分析)。已经提出了通过参考结构SnO2 / Zn2SNO4 / Cds / CdTe / Cu的基于CDTE基于PV电池SnO2 / Zn2SNO4 / Cds / CdTe / BSF / BC的改性结构。 ZnTe和Cu2Te等较高的带隙材料,如As2te3和Sb2te3等ZnTe和Cu2Te和低带隙材料已被用作BSF,以在超薄CdTe细胞中的背面接触处减少少数载体复合损失。在该分析中,已经发现使用BSF的基于CDTE的PV电池的最高转化效率约为5μm的CDTE吸收剂厚度为约17%。然而,具有不同BSF的所提出的结构表明,具有仅0.6μm的超薄CdTe吸收器的可接受的效率。具有AS2Te3 BSF的所提出的结构显示出20.8%(V,MA / CM2和)的最高转化效率。此外,所提出的结构在大多数范围内显示出改善的稳定性,因为发现细胞具有相对较低的负温度系数。然而,具有Znte BSF的细胞显示器比其他具有-0.3%/℃的温度系数(Tc)的其他拟议细胞的整体稳定性更好。

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