首页> 外文期刊>Materials Sciences and Applications >Comprehensive Analysis of CuIn&sub&1-x&/sub&Ga&sub&x&/sub&Se&sub&2&/sub& Based Solar Cells with Zn&sub&1-y&/sub&Mg&sub&y&/sub&O Buffer Layer
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Comprehensive Analysis of CuIn&sub&1-x&/sub&Ga&sub&x&/sub&Se&sub&2&/sub& Based Solar Cells with Zn&sub&1-y&/sub&Mg&sub&y&/sub&O Buffer Layer

机译:的CuIn&LT综合分析;分→1-X LT; /子>嘎&副> X< /子> SE&副→2< /子>基于基于太阳能电池,具有Zn& sub& 1-y& / sub& mg& y

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The development of cadmium-free CIGS solar cells with high conversion efficiency is crucial due to the toxicity of cadmium. Zinc-based buffer layers seem to be the most promising. In this paper, a numerical analysis using SCAPS-1D software was used to explore the Zn(Mg,O) layer as an alternative to the toxic CdS layer. The effect of several properties such as thickness, doping, Mg concentration of the Zn(Mg,O) layer on the current-voltage parameters was explored and their optimal values were proposed. The simulation results reveal that the optimal value of the ZMO layer thickness is approximately 40 nm, the doping at 10~(17) cm~(-3) and an Mg composition between 0.15 and 0.2. In addition, the effect of Gallium (Ga) content in the absorber as well as the Zn(Mg,O)/CIGS interface properties on the solar cell’s performance was examined. The results show that contrary to the CdS buffer layer, the best electrical characteristics of the ZMO/CIGS heterojunction are obtained using a Ga-content equal to 0.4 and high interface defect density or unfavorable band alignment may be the causes of poor performances of Zn(Mg,O)/CIGS solar cells in the case of low and high Mg-contents.
机译:由于镉的毒性,具有高转化效率的无镉的CIGS太阳能电池的发展是至关重要的。基于锌的缓冲层似乎是最有前途的。在本文中,使用SCAPS-1D软件的数值分析用于探索Zn(Mg,O)层作为有毒CDS层的替代方案。探讨了诸如厚度,掺杂,Zn(Mg,O)层上的厚度,掺杂,Mg浓度的几种性质的影响,并提出了它们的最佳值。仿真结果表明,ZMO层厚度的最佳值约为40nm,掺杂在10〜(17)cm〜(-3)和0.15和0.2之间的mg组成。此外,研究了吸收器中镓(Ga)含量以及Zn(Mg,O)/ CIGS界面性质对太阳能电池性能的影响。结果表明,与CDS缓冲层相反,使用等于0.4的GA含量获得ZMO / CIGS异质结的最佳电特性,并且高界面缺陷密度或不利的带对准可能是Zn性能差的原因( Mg,O)/ CIGS太阳能电池在低和高Mg含量的情况下。

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