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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Structural and electronic properties of the heterointerfaces for Cu2ZnSnS4 photovoltaic cells: a density-functional theory study
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Structural and electronic properties of the heterointerfaces for Cu2ZnSnS4 photovoltaic cells: a density-functional theory study

机译:Cu2ZnSnS4光伏电池异质界面的结构和电子性质:密度泛函理论研究

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The quaternary compound semiconductor Cu2ZnSnS4 (CZTS) is a promising photovoltaic absorber material for thin-film solar cell applications. Density-functional theory calculations have been performed to investigate the structural and electronic properties of the CdS/CZTS heterointerfaces in CZTS-based cells. We find that CdS favors epitaxial growth on the Cu-Zn plane of CZTS along the direction of [100], which can eliminate the effects of the wrong bonds at the interfaces and enhance the energetic barrier for charge carrier recombination across the interfaces with an increased band gap. The band alignment is calculated for the epitaxial CZTS/CdS heterointerface by employing the HSE06 functional and the results show a type-II band alignment with VBO and CBO values of 0.95 eV and -0.05 eV, respectively. Also, the experimental phenomenon of Zn segregation at CdS/CZTS interfaces is corroborated. Zn segregation can enhance the stability of the heterointerfaces, but damage the solar cell performance by decreasing the band gap when the Zn concentration is sufficiently high. We show that besides the defects and undesired phases in CZTS, the heterointerfaces between the absorption layers (CZTS) and the buffer layer (CdS) can also be an important factor that affects the performance of CZTS cells. The present work provides a theoretical base for engineering the heterointerfaces and achieving better performance of CZTS-based solar cells.
机译:季化合物半导体Cu2ZnSnS4(CZTS)是用于薄膜太阳能电池应用的有前途的光伏吸收材料。已经进行了密度泛函理论计算,以研究基于CZTS的单元格中CdS / CZTS异质界面的结构和电子性质。我们发现CdS有利于沿[100]方向在CZTS的Cu-Zn平面上进行外延生长,这可以消除界面处错误键的影响,并通过增加界面处的电荷载流子复合而增加了能垒。带隙。通过使用HSE06功能计算外延CZTS / CdS异质界面的能带排列,结果显示II型能带排列,VBO和CBO值分别为0.95 eV和-0.05 eV。而且,证实了在CdS / CZTS界面处锌偏析的实验现象。锌的偏析可以增强异质界面的稳定性,但是当锌的浓度足够高时,通过减小带隙可以损害太阳能电池的性能。我们表明,除了CZTS中的缺陷和不良相,吸收层(CZTS)和缓冲层(CdS)之间的异质界面也可能是影响CZTS电池性能的重要因素。本工作为工程异质界面和实现基于CZTS的太阳能电池更好的性能提供了理论基础。

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