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Impact of alloying duration of an electrodeposited Cu/Sn/Zn metallic stack on properties of Cu2ZnSnS4 absorbers for thin-film solar cells

机译:电沉积Cu / Sn / Zn金属堆的合金化持续时间对薄膜太阳能电池Cu2ZnSnS4吸收剂性能的影响

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The impacts of preheating of an electrodeposited Cu/Sn/Zn (CTZ) stack precursor on structural changes of the CTZ precursor and the impact on structural and electric properties of the finally obtained Cu2ZnSnS4 (CZTS) films are discussed in detail. We found that preheating for relatively long durations improved the qualities of CZTS films: these films were composed of large grains and had compact and flat surface morphologies. The best solar cell with efficiency of 8.1% was obtained on the basis of a CZTS film derived from the CTZ precursor preheated for 200 min. The external quantum efficiency response of the cell indicated efficient utilization of photons with relatively long wavelength regions because of its good structural and electronic properties. On the other hand, a short circuit current density-temperature property of one of the best cells in this study suggested that the CZTS film had deep acceptor levels and/or an appreciable energy barrier to the Mo back contact. Moreover, an open circuit voltage-temperature property of the corresponding device showed activation energy of 1.18 eV, indicating preferential occurrence of CdS-CZTS interface recombination. Copyright (C) 2015 John Wiley & Sons, Ltd. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:详细讨论了电沉积Cu / Sn / Zn(CTZ)堆叠前体的预热对CTZ前体的结构变化的影响以及对最终获得的Cu2ZnSnS4(CZTS)膜的结构和电性能的影响。我们发现,较长时间的预热可以改善CZTS薄膜的质量:这些薄膜由大晶粒组成,具有紧凑而平坦的表面形态。基于预热200分钟的CTZ前体衍生的CZTS膜,可获得效率为8.1%的最佳太阳能电池。电池的外部量子效率响应表明,由于其良好的结构和电子特性,可以有效利用具有相对较长波长区域的光子。另一方面,本研究中最佳电池之一的短路电流密度-温度特性表明,CZTS膜具有较深的受体能级和/或对Mo背接触具有明显的能垒。此外,相应器件的开路电压-温度特性显示出1.18 eV的活化能,表明优先发生CdS-CZTS接口重组。版权所有(C)2015 John Wiley&Sons,Ltd.。版权所有(C)2015 John Wiley&Sons,Ltd.。

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