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Ultra Thin High Efficiency CdS/CdTe Thin Film Solar Cells from Numerical Analysis

机译:超薄高效CDS / CDTE薄膜太阳能电池来自数值分析

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Polycrystalline cadmium telluride (CdTe) is the leading material for realization of low cost and high efficiency solar cell for terrestrial use. In this work, the CdTe conventional structure [1] was investigated and achieved the maximum conversion efficiency of 13.2% with CdTe baseline structure of SnO_2/CdS/CdTe. To explore the possibility of ultra thin and high efficiency CdS/CdTe solar cell, the CdTe absorber layer and CdS window layer were decreased and found that 1 μm thin CdTe layer showed reasonable range of efficiency. Moreover, it was found that there were scopes to increase cell efficiency by reducing the cadmium sulfide (CdS) window layer thickness. The CdS window layer was reduced to 60 nm with insertion of zinc oxide (ZnO) or zinc stannate (Zn_2SnO_4) as a buffer layer to prevent forward leakage current. All the simulation have been done using Analysis of Microelectronic and Photonic Structures (AMPS 1D) simulator. The maximum conversion efficiency of 18.3% (Voc = 1.00 V, Jsc = 26.15 mA/cm~2, FF = 0.769) was achieved with 1 μm-CdTe absorber layer, 60 nm-CdS window layer and 100 nm of ZnO or Zn_2SnO_4 buffer layer. Moreover, it was found that the cell normalized efficiency linearly decreased with the increasing operating temperature at the gradient of -0.4%/°C, which indicated better stability of the CdS/CdTe solar cells.
机译:多晶碲化镉(CDTE)是实现低成本和高效太阳能电池的领先材料,用于陆地使用。在这项工作中,研究了CDTE常规结构[1],并通过SNO_2 / CDS / CDTE的CDTE基线结构实现了13.2%的最大转化效率。为了探讨超薄和高效CDS / CDTE太阳能电池的可能性,降低了CDTE吸收层和CDS窗口层,发现1μm薄的CDTE层显示出合理的效率范围。此外,发现通过减少硫化镉(CDS)窗口层厚度来增加细胞效率的范围。 CDS窗口层减少到60nm,其插入氧化锌(ZnO)或锌静体(Zn_2SnO_4)作为缓冲层以防止前进漏电流。已经使用微电子和光子结构(AMPS 1D)模拟器的分析来完成所有模拟。用1μm-Cdte吸收层,60nm-CDs窗口层和100nm的ZnO或Zn_2SNO_4缓冲液实现18.3%(VOC = 1.00V,JSC = 26.15mA / cm〜2,FF = 0.769)的最大转化效率层。此外,发现细胞归一化效率随着-0.4%/℃的梯度的梯度的增加而导致线性降低,这表明CDS / CdTe太阳能电池的稳定性更好。

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