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Effect of structural and temperature variations on perovskite/Mg_2Si based monolithic tandem solar cell structure

机译:基于钙钛矿/ MG_2SI基于整体串联太阳能电池结构的结构和温度变化的影响

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摘要

Perovskite being a wide bandgap material has shown profound impact as an active material for the use of top cell in the tandem solar cell. However, finding a suitable low-bandgap material for the bottom cell of the perovskite associated tandem solar cell has always been a concern for researchers. Over the last decade, several materials for designing of the bottom cell have been reported as a combination to perovskite for superior efficiency. In this paper, a novel perovskite/Mg_2Si based monolithic tandem solar cell is reported through numerical simulations using AFROS-HET v2.5. The reported device shows 25% efficiency prior to optimization. However, the structure of the device has been optimized to obtain better results in terms of efficiency by varying active layer thickness and using different electron/hole transport materials. About 8% improvement in efficiency has been noticed by the selection of optimum design parameters. Further, to account for the temperature reliability of the proposed design, the device is simulated for a temperature range of 300 K-450 K. This study highlights a drop-in open-circuit voltage (V_(OC)) by a factor of about 0.1 V with an increase in temperature by about 50 K. Results clearly establish that structural and temperature variations significantly affect overall device performance. Results have been suitably analyzed so as to set a roadmap for further research work in this direction and explore the best of the characteristics of this unique tandem solar cell structure.
机译:Perovskite是一个宽的带隙材料,显示了作为在串联太阳能电池中使用顶部细胞的活性材料的深刻影响。然而,寻找合适的低带隙材料,用于钙钛矿相关的串联太阳能电池的底部细胞一直是研究人员的关注。在过去十年中,已经报告了用于设计底部细胞的几种材料作为佩洛夫斯的组合,以获得卓越的效率。本文通过使用AFROS-HET V2.5的数值模拟报道了一种新的钙钛矿/ MG_2SI基于钙钛矿/ MG_2SI的整体串联太阳能电池。报告的装置在优化之前显示了25%的效率。然而,通过改变有源层厚度和使用不同的电子/空穴传输材料,已经优化了该装置的结构以在效率方面获得更好的结果。通过选择优化的设计参数,已经注意到效率提高了大约8%。此外,为了考虑所提出的设计的温度可靠性,将该装置模拟300 k-450k的温度范围。该研究突出显示了一个突出的开路电压(V_(oc))约为约0.1V随着温度的增加约50 k。结果明确确定结构和温度变化显着影响整体器件性能。结果得到了适当分析的结果,以便在此方向上进行进一步研究工作的路线图,并探讨这一独特串联太阳能电池结构的最佳特性。

著录项

  • 来源
    《Applied Physics》 |2020年第7期|580.1-580.12|共12页
  • 作者单位

    VLSI Centre of Excellence Chitkara University Institute of Engineering and Technology Chitkara University Punjab India;

    VLSI Centre of Excellence Chitkara University Institute of Engineering and Technology Chitkara University Punjab India;

    VLSI Centre of Excellence Chitkara University Institute of Engineering and Technology Chitkara University Punjab India;

    VLSI Centre of Excellence Chitkara University Institute of Engineering and Technology Chitkara University Punjab India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    AFORS-HET; Mg_2Si; Monolithic; Perovskite; Simulation; Tandem solar cell;

    机译:背弃 - het;mg_2si;单片;Perovskite;模拟;串联太阳能电池;

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