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Impact of heavy hole levels on the photovoltaic conversion efficiency of In_xGa_(1-x)N/InN quantum dot intermediate band solar cells

机译:重空穴水平对In_xGa_(1-x)N / InN量子点中带太阳能电池光伏转换效率的影响

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摘要

We report a theoretical investigation of the photovoltaic conversion efficiency of solar cells based on the introduction of InxGa1-xN/InN quantum dot supracrystals arrayed in the i-region of a p - i - n photodiode. The position and width of intermediate bands induced by the discrete quantized energy levels of electrons and holes originating from QDs are determined by using the Kronig-Penney model. Thus, interband and intersubband transitions are determined for different dot sizes and inter-dot distances. Taking into account the hole level and its impact on the band offset usually neglected in the same studies, all characteristic parameters of the cell such as open circuit voltage, short circuit current density and photoelectric conversion efficiency are determined as a function of the In-concentration, mean size and inter-dot spacing of QDs. The results show that the performances of this new generation of solar cell increase considerably and can be adjusted by controlling the size, inter-dot spacing and In-concentration.
机译:我们报告了基于InxGa1-xN / InN量子点超晶体在p-i-n光电二极管的i区域中排列的引入,对太阳能电池的光电转换效率进行了理论研究。通过使用Kronig-Penney模型确定源自QD的电子和空穴的离散量化能级所诱导的中间带的位置和宽度。因此,针对不同的点尺寸和点间距离确定带间和子带间过渡。考虑到在同一研究中通常会忽略的空穴水平及其对带隙的影响,因此确定电池的所有特征参数,例如开路电压,短路电流密度和光电转换效率是In-浓度的函数,QD的平均大小和点间距。结果表明,这种新一代太阳能电池的性能大大提高,并且可以通过控制尺寸,点间距和浓度来进行调节。

著录项

  • 来源
    《Superlattices and microstructures》 |2019年第5期|202-211|共10页
  • 作者单位

    Mohammed Univ Rabat, ENSET, Grp Optoelect Semicond & Nanomat, Lab Matiere Condensee & Sci Interdisciplinaires L, Rabat, Morocco;

    UIR, REAM Lab, Rabat, Morocco|Univ Abdelmalek Essadi, EIMIS Lab, FST, Tanger, Morocco;

    Mohammed Univ Rabat, ENSET, Grp Optoelect Semicond & Nanomat, Lab Matiere Condensee & Sci Interdisciplinaires L, Rabat, Morocco|CRMEF, Tanger, Morocco;

    Mohammed Univ Rabat, ENSET, Grp Optoelect Semicond & Nanomat, Lab Matiere Condensee & Sci Interdisciplinaires L, Rabat, Morocco;

    Univ Hassan II Casablanca, Fac Sci & Technol, Lab Condensed Matter & Renewable Energy, BP146, Mohammadia, Morocco;

    Univ Hassan II Casablanca, Fac Sci & Technol, Lab Condensed Matter & Renewable Energy, BP146, Mohammadia, Morocco;

    Mohammed Univ Rabat, ENSET, Grp Optoelect Semicond & Nanomat, Lab Matiere Condensee & Sci Interdisciplinaires L, Rabat, Morocco;

    Univ Antioquia, Inst Fis, Fac Ciencias Exactas & Nat, Grp Mat Condensada UdeA, Calle 70 52-21, Medellin, Colombia;

    Univ Lorraine, LCP A2MC, F-57000 Metz, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar cells; Photovoltaic; Quantum dots; Intermediate band; Conversion efficiency; Temperature effect;

    机译:太阳能电池光伏量子点中间带转换效率温度效应;

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