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Study on the Stability of Unpackaged CdS/CdTe Solar Cells with Different Structures

机译:不同结构解压缩CDS / CDTE太阳能电池的稳定性研究

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In this work, the stability of unpackaged CdTe solar cells with different configurations was investigated according to the International Electrotechnical Commission IEC 61215-2016. The measurements of thermal cycling from -40°C to +85°C and 24-hour temperature cycling from -40°C to +85°C withstanding the effects of 20-hour penetration of 85°C were carried out in CdS/CdTe solar cells with structures of FTO/CdS/CdTe/Au, FTO/CdS/CdTe/back contact/Au, and FTO/MZO/CdS/CdTe/back contact/Au, respectively. The performances of these cells before and after the thermal aging experiments were investigated by using light and dark I-V together with C-V. The results reveal varied performance degradation before and after thermal aging in the cells with different structures. Among these, the most deteriorated device is the one without back contact (BC), whose efficiency decreased by 25.12% after thermal cycling accompanying an obvious roll-over phenomenon when forward bias was greater than open circuit voltage. On the contrary, the reduction in the efficiency was about 16.80% in the case cells with BC, and the roll-over phenomenon was not so significant. Furthermore, for the devices with optimized front contact of FTO/MZO, the thermal stability was improved obviously. Interestingly, short-circuit current density associated with the carrier concentration of cells remained relatively small variations compared with the change of V_(oc) and fill factor. All the results indicated that an efficient back contact layer and an optimized front electrode were the indispensable structural elements to attain high stabilization in the CdS/CdTe solar cells.
机译:在这项工作中,根据国际电工委员会IEC 61215-2016研究了具有不同配置的未包装的CDTE太阳能电池的稳定性。在-40℃至+ 85℃下,从-40℃至+ 85℃的温度测量到-40℃至+ 85℃的温度循环,在CDS / CDTE中进行了20小时渗透的效果20小时的效果具有FTO / CDS / CDTE / AU,FTO / CDS / CDTE /后触点/ AU的结构的太阳能电池,以及FTO / MZO / CDS / CDTE /后触点/ AU。通过使用光和暗I-V与C-V一起研究热老化实验前后这些细胞的性能。结果揭示了在具有不同结构的细胞中热老化之前和之后的不同性能降解。其中,最劣化的装置是没有背部接触(BC)的装置,其效率在热循环后伴随着正向偏置的明显横向现象,其效率降低了25.12%,当前偏压大于开路电压时。相反,效率的降低在具有BC的情况下的含量细胞约为16.80%,并且翻转现象并不是那么重要。此外,对于具有FTO / MZO的优化前触点的装置,显然提高了热稳定性。有趣的是,与载体(OC)和填充因子的变化相比,与细胞的载体浓度相关的短路电流密度保持相对较小的变化。所有结果表明,有效的后接触层和优化的前电极是在CDS / CDTE太阳能电池中获得高稳定的不可或缺的结构元件。

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