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Physics-Based Modeling and Experimental Study of Si-Doped InAs/GaAs Quantum Dot Solar Cells

机译:基于物理学的Si掺杂INAS / GaAs量子点太阳能电池的建模与实验研究

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This paper presents an experimental and theoretical study on the impact of doping and recombination mechanisms on quantum dot solar cells based on the InAs/GaAs system. Numerical simulations are built on a hybrid approach that includes the quantum features of the charge transfer processes between the nanostructured material and the bulk host material in a classical transport model of the macroscopic continuum. This allows gaining a detailed understanding of the several physical mechanisms affecting the photovoltaic conversion efficiency and provides a quantitatively accurate picture of real devices at a reasonable computational cost. Experimental results demonstrate that QD doping provides a remarkable increase of the solar cell open-circuit voltage, which is explained by the numerical simulations as the result of reduced recombination loss through quantum dots and defects.
机译:本文介绍了基于INAS / GAAS系统对量子点太阳能电池掺杂和重组机制的影响的实验和理论研究。 在混合方法上建立了数值模拟,其包括纳米结构材料和宏观载体连续体的经典传输模型中的纳米结构材料和散装主体材料之间的电荷转移过程的量子特征。 这允许在几种影响光伏转换效率的物理机制的详细了解,并以合理的计算成本提供定量精确的真实设备的图像。 实验结果表明,QD掺杂提供了太阳能电池开路电压的显着增加,这通过数值模拟来解释为通过量子点和缺陷的复合损失降低的结果。

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    Dept Elect &

    Telecommun Corso Duca Abruzzi 24 I-10129 Turin Italy;

    UCL Dept Elect &

    Elect Engn Torrington Pl London WC1E 7JE England;

    CNR IEIIT Corso Duca Abruzzi 24 I-10129 Turin Italy;

    UCL Dept Elect &

    Elect Engn Torrington Pl London WC1E 7JE England;

    Dept Elect &

    Telecommun Corso Duca Abruzzi 24 I-10129 Turin Italy;

    UCL Dept Elect &

    Elect Engn Torrington Pl London WC1E 7JE England;

    UCL Dept Elect &

    Elect Engn Torrington Pl London WC1E 7JE England;

    Dept Elect &

    Telecommun Corso Duca Abruzzi 24 I-10129 Turin Italy;

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  • 正文语种 eng
  • 中图分类 物理化学计量;
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