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首页> 外文期刊>Solar Energy >Effect of MoS_2 interlayer on performances of copper-barium-tin-sulfur thin film solar cells via theoretical simulation
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Effect of MoS_2 interlayer on performances of copper-barium-tin-sulfur thin film solar cells via theoretical simulation

机译:MOS_2中间层对铜 - 钡 - 硫磺薄膜太阳能电池的性能的影响通过理论模拟

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摘要

Cu2BaSn(S,Se)(4) (CBTSSe) solar cells are emerging photovoltaic devices due to their high theoretical efficiencies of similar to 31%, environment-friendly and earth-abundant composition, low density of non-recombination defects, and so on. However, the record efficiency of CBTSSe solar cell is only 5.2%, showing the importance of studying their performance via numerical analysis to further enhance their practical efficiencies. In this paper, the effect of absorber and buffer layers on performances of Cu2BaSnS4 (CBTS) solar cells are firstly systematically studied via the SCAPS-1D software to provide a platform for the study of the effect of MoS2 interlayer on the performances of CBTS solar cells. The highest PCE of CBTS solar cell with a 30 nm CdS buffer layer is 11.87%. The PCE of CBTS solar cell with a 0.8 mu m CBTS absorb layer is 12.51%, indicating that the CBTS solar cell is a potential low-cost solar cell due to its large optical absorption coefficient (alpha 10(4) cm(-1)). The efficiency of CBTS solar cell is improved to 16.47% when the carrier concentration of CBTS is 10(16) cm(-3). The relationship between the performance of solar cell and the band gap, thickness, donor concentration, acceptor concentration of MoS2 interlayer is systematically investigated on the basis of the optimized efficiency. It is found that MoS2 interlayer plays an important role in the performance of CBTS solar cell. The p-type MoS2 has a beneficial effect on the efficiency improvement while the n-type MoS2 has a negative effect on the efficiency enhancement. The highest PCE of CBTS solar cell is as high as 18.28% when the thickness and the acceptor concentration of MoS2 are 4 nm and 10(19) cm(-3), respectively. Our simulation result provides a promising research direction to further improve the actual efficiency of the CBTS solar cell.
机译:由于其具有与31%,环保和土坯成分的高理论效率,非重组缺陷的低密度,因此,Cu2BasN(4)(CBTSSE)太阳能电池是出现的光伏器件。 。然而,CBTSSE太阳能电池的记录效率仅为5.2%,表明通过数值分析研究其性能的重要性,以进一步提高其实际效率。在本文中,首先通过SCAPS-1D软件在系统地研究了吸收器和缓冲层对CU2BASNS4(CBT)太阳能电池性能的影响,为MOS2中间层对CBTS太阳能电池性能进行了研究的平台。具有30nm CDS缓冲层的CBT太阳能电池的最高PCE为11.87%。具有0.8μmcbts吸收层的CBT太阳能电池的PCE为12.51%,表明CBTS太阳能电池是由于其大的光学吸收系数(α& 10(4)厘米( - )是潜在的低成本太阳能电池( - 1))。当CBT的载体浓度为10(16 )cm(-3)时,CBTS太阳能电池的效率得到改善至16.47%。系统地基于优化效率系统地研究了太阳能电池和带隙,厚度,供体浓度,MOS2中间层中夹层的受体浓度之间的关系。结果发现MOS2中间层在CBTS太阳能电池的性能中起着重要作用。 P型MOS2对效率提高具有有益的效果,而N型MOS2对效率增强具有负面影响。当厚度和MOS2的受体浓度分别为4nm和10(19 )cm(-3)时,CBTS太阳能电池的最高PCE高达18.28%。我们的仿真结果提供了有希望的研究方向,以进一步提高CBTS太阳能电池的实际效率。

著录项

  • 来源
    《Solar Energy》 |2021年第7期|384-397|共14页
  • 作者

    Luo Haitian; Zhang Yi; Li Hui;

  • 作者单位

    Chinese Acad Sci Inst Elect Engn Beijing 100190 Peoples R China;

    Nankai Univ Inst Photoelect Thin Film Devices & Technol Tianjin 300350 Peoples R China|Nankai Univ Tianjin Key Lab Thin Film Devices & Technol Tianjin 300350 Peoples R China;

    Chinese Acad Sci Inst Elect Engn Beijing 100190 Peoples R China|Huaqiao Univ Fujian Key Lab Photoelect Funct Mat Xiamen 361021 Fujian Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China;

  • 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

    Cu2BaSn(S,Se)(4); Thin-film Solar Cell; SCAPS-1D; Simulation;

    机译:CU2BASN(S;SE)(4);薄膜太阳能电池;SCAPS-1D;模拟;

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