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Boosting the efficiency of single junction kesterite solar cell using Ag mixed Cu2ZnSnS4 active layer

机译:使用Ag混合Cu2zNSN4有源层提高单结kesterite太阳能电池的效率

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摘要

We propose a silver (Ag) mixed Cu2ZnSnS4 (ACZTS) based solar cell architecture to improve the efficiency of single junction Cu2ZnSnS4 (CZTS) solar cells. The configuration exploits enhancement of depletion region using a CdS/ACZTS/CZTS architecture. The doping concentration of different layers is adapted such that the primary absorber layer (ACZTS) may become fully depleted and CZTS acts as back surface field layer. We analyze the prospect and performance of the proposed architecture through rigorous optoelectronic simulations. We also study the role of the Schottky barrier at the back-contact interface of a conventional CZTS cell. In this regard, we propose to use an Ohmic contact to increase the open circuit voltage by replacing the molybdenum (Mo) with indium tin oxide (ITO). We further optimize the ACZTS thickness and calculated a maximum obtainable efficiency of 17.59% at 550 nm ACZTS with 940 mV open circuit voltage, 24.65 mA cm(-2) short circuit current and 75.94% fill factor including the effects of ShockleyRead-Hall, radiative and surface recombination mechanisms. The efficiency of the optimized cell is similar to 6.6% higher than that of the existing best single junction kesterite cell. We also vary the minority carrier life time (tau(c)) and surface recombination velocity of back contact (SRVback) and report an ideal efficiency of 22.14% with tau(c) = 1 ms and SRVback = 1000 cm s(-1). Finally, we replace the toxic CdS buffer layer with eco-friendly ZnS and observe a relative improvement of 12.91% in the efficiency. The concept proposed and analyses performed in this work advance the efficiency of single junction kesterite solar cells.
机译:我们提出了一种基于银(AG)混合Cu2zNSN4(ACZTS)的太阳能电池架构,以提高单结Cu2zNSNS4(CZT)太阳能电池的效率。该配置利用CDS / ACZTS / CZTS架构利用耗尽区的增强。不同层的掺杂浓度适于使得主吸收层(ACZT)可以完全耗尽,并且CZT标记为后表面场层。我们通过严格的光电模拟分析所提出的架构的前景和性能。我们还研究了肖特基势垒在传统CZT细胞的背面接触界面处的作用。在这方面,我们建议使用欧姆接触来通过用氧化铟锡(ITO)替换钼(MO)来增加开路电压。我们进一步优化ACZTS厚度和在550nm处具有ACZTS 940毫伏的开路电压,24.65毫安厘米(-2)短路电流和75.94%的填充因子包括ShockleyRead霍尔效应计算的17.59%的最大可获得效率,辐射和表面复合机制。优化细胞的效率与现有最佳单结kesterite细胞的效率高出6.6%。我们还改变了少数群体寿命时间(TAU(C))和背面接触的表面重组速度(SRVBack),并报告了TAU(C)= 1ms和SRVBack = 1000cm S(-1)的理想效率为22.14% 。最后,我们用生态友好型Zns取代有毒CDS缓冲层,并在效率中观察相对提高12.91%。在这项工作中提出和分析的概念推进了单结kesterite太阳能电池的效率。

著录项

  • 来源
    《RSC Advances 》 |2018年第9期| 共9页
  • 作者

    Saha Uday; Alam Md. Kawsar;

  • 作者单位

    Bangladesh Univ Engn &

    Technol Dept Elect &

    Elect Engn Dhaka 1205 Bangladesh;

    Bangladesh Univ Engn &

    Technol Dept Elect &

    Elect Engn Dhaka 1205 Bangladesh;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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