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两步法上转换太阳能电池。

Two-step photon up-conversion solar cells.

机构信息

Department of Electrical and Electronic Engineering, Graduate School of Engineering, Kobe University, 1-1 Rokkodai, Nada, Kobe 657-8501, Japan.

出版信息

Nat Commun. 2017 Apr 6;8:14962. doi: 10.1038/ncomms14962.

Abstract

Reducing the transmission loss for below-gap photons is a straightforward way to break the limit of the energy-conversion efficiency of solar cells (SCs). The up-conversion of below-gap photons is very promising for generating additional photocurrent. Here we propose a two-step photon up-conversion SC with a hetero-interface comprising different bandgaps of AlGaAs and GaAs. The below-gap photons for AlGaAs excite GaAs and generate electrons at the hetero-interface. The accumulated electrons at the hetero-interface are pumped upwards into the AlGaAs barrier by below-gap photons for GaAs. Efficient two-step photon up-conversion is achieved by introducing InAs quantum dots at the hetero-interface. We observe not only a dramatic increase in the additional photocurrent, which exceeds the reported values by approximately two orders of magnitude, but also an increase in the photovoltage. These results suggest that the two-step photon up-conversion SC has a high potential for implementation in the next-generation high-efficiency SCs.

摘要

降低隙下光子的传输损耗是打破太阳能电池(SCs)能量转换效率限制的一种直接方法。隙下光子的上转换对于产生额外的光电流非常有前景。在这里,我们提出了一种具有异质界面的两步光子上转换 SC,该异质界面由不同带隙的 AlGaAs 和 GaAs 组成。对于 AlGaAs 的隙下光子激发 GaAs,并在异质界面处产生电子。在 GaAs 的隙下光子的作用下,异质界面处积累的电子被向上泵浦到 AlGaAs 势垒中。通过在异质界面处引入 InAs 量子点,可以实现高效的两步光子上转换。我们不仅观察到额外光电流的显著增加,超过了约两个数量级的报道值,而且还观察到光电压的增加。这些结果表明,两步光子上转换 SC 在下一代高效 SC 中有很高的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b6de/5384214/08f6b55adf26/ncomms14962-f1.jpg

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