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Study on the prospects of Sb2Te3 back surface field in ZnCdS/ZnCdTe thin film solar cell

机译:ZnCdS / ZnCdTe薄膜太阳能电池中Sb2Te3背面场的研究前景

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This paper numerically explores the possibility of high efficiency, ultrathin and stable ZnCdTe (CZT) polycrystalline solar cell using well accepted simulator AMPS-1D. The base line structure of the ZnCdTe cell (Glass/ITO/CdS/ZnCdTe/Back Contact) was the beginning point of this work and further this base line structure was modified to achieve ultrathin, higher efficiency and stable solar cell. In modified structure, CdS window layer has been replaced by a wide band gap material ZnCdS which increase the spectral response in the blue region as well as ZnCdS window layer was reduced to the extreme limit with insertion of a suitable buffer layer of ZnO in between ITO and window layer to check forward leakage current of ultrathin window layer. To lessen the back surface recombination loss and barrier height at back contact another extra layer (BSF p-SbTe) has been inserted in between p-ZnCdTe layer and back contact (BC). Then the thickness of the window layer and absorber layer of the modified structure has been optimized. The modified structure with back surface field (BSF) layer (Glass/ ITO/ZnO/ZnCdS/ZnCdTe/SbTe/BC) shows the highest efficiency of 23.17% (J=33.50 mA/cm, FF=0.77% and V= 0.98V). Finally the temperature effect on cell parameters was investigated and the overall temperature coefficient (TC) of the proposed cell is found to be 0.085%.
机译:本文使用公认的模拟器AMPS-1D数值研究了高效,超薄且稳定的ZnCdTe(CZT)多晶太阳能电池的可能性。 ZnCdTe电池(玻璃/ ITO / CdS / ZnCdTe /背面接触)的基线结构是这项工作的起点,并且进一步修改了该基线结构以实现超薄,更高效率和稳定的太阳能电池。在改进的结构中,CdS窗口层已被宽带隙材料ZnCdS取代,该材料增加了蓝色区域的光谱响应,并且ZnCdS窗口层通过在ITO之间插入合适的ZnO缓冲层而降低到极限。窗口层检查超薄窗口层的正向漏电流。为了减少背面复合损失和背面接触时的势垒高度,在p-ZnCdTe层和背面接触(BC)之间插入了另一个额外的层(BSF p-SbTe)。然后,优化结构的窗口层和吸收层的厚度。带有背面场(BSF)层的改性结构(玻璃/ ITO / ZnO / ZnCdS / ZnCdTe / SbTe / BC)显示出最高的效率为23.17%(J = 33.50 mA / cm,FF = 0.77%和V = 0.98V )。最后,研究了温度对电池参数的影响,发现该电池的整体温度系数(TC)为0.085%。

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