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Numerical investigation of CIGS thin-film solar cells

机译:CIGS薄膜太阳能电池的数值研究

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摘要

The high efficiency of thin Cu(In1-xGax)Se-2 solar cells is investigated using the Atlas SILVACO-TCAD tools. The CIGS model is based on an experimental study and takes into account the physical properties, dimensions, and thicknesses of the different layers. The main features model used consists of the thermionic emission concept that was used to describe the carrier transport model across the buffer/absorber heterojunction. Thermionic emission was found to be an important mechanism for carrier transport across the hetero-interface since it produced a matching behaviour for the cell under study with experimental behaviour, thus validating the considered CIGS model for further investigation. To improve efficiency, magnesium fluoride (MgF2) is used as the preferred anti-reflective coating to maximize the photocurrent from the incident light intensity. The effect of varying the single-layer antireflective coating thickness variation, surface recombination velocity at the hetero-interface between CdS and CIGS layers, absorber thickness variation, and gallium content in the Cu(In1-xGax)Se-2 on cell performance are studied under AM 1.5G, 1 sun illumination. The novelty of this research includes the configuration of the p-CIGS-CdS cells with thin CIS material used for the back surface field layer to improve efficiency. The result has shown that a cell performance of 25% efficiency can be achieved using a 1 mu m thick absorber and an MgF2 anti-reflective layer. This result can further aid the development of ultrathin, flexible, and tandem solar cell devices.
机译:使用ATLAS Silvaco-TCAD工具研究了薄Cu(In1-XGAX)SE-2 SE-2太阳能电池的高效率。 CIGS模型基于实验研究,并考虑了不同层的物理性质,尺寸和厚度。所使用的主要特征模型包括用于描述缓冲器/吸收器异质结的载流子传输模型的热离子发射概念。发现热离子排放是载流量过杂型界面的重要机制,因为它产生了在实验行为的研究中为细胞的匹配行为,从而验证了考虑的CIGS模型以进一步调查。为了提高效率,氟化镁(MgF 2)用作优选的抗反射涂层,以最大化来自入射光强度的光电流。研究了CDS和CIGS层之间的异质界面处的单层抗反射涂层厚度变化,表面重组速度,Cu(In1-Xgax)SE-2中的杂界面,吸收剂厚度变化和镓含量在细胞性能下进行了影响下午1.5克,1次太阳照明。该研究的新颖性包括具有用于后表面场层的薄的CIS材料的P-CIGS / N-CDS细胞的配置,以提高效率。结果表明,使用1μM厚的吸收器和MGF2抗反射层可以实现25%效率的电池性能。该结果可以进一步帮助显着的超薄,柔性和串联太阳能电池装置。

著录项

  • 来源
    《Solar Energy》 |2020年第7期|440-447|共8页
  • 作者单位

    Kuwait Coll Sci & Technol Elect & Commun Engn Dept Rd N 7 Doha Kuwait|Univ Messina Dipartimento Sci Matemat & Informat Sci Fis & Sci Terra I-98166 Messina Italy;

    Univ Messina Dipartimento Sci Matemat & Informat Sci Fis & Sci Terra I-98166 Messina Italy;

    Kuwait Univ Coll Engn & Petr Elect Engn Dept Safat 13060 Kuwait;

  • 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

    Thin-film; Heterointerface; Carriers transport; Reflectance; Silvaco;

    机译:薄膜;异常面;载体运输;反射率;Silvaco;

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