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EfficientSteplike Carrier Multiplication in PercolativeNetworks of Epitaxially Connected PbSe Nanocrystals

机译:高效的渗流中的阶梯式载波乘法外延连接的PbSe纳米晶体的网络

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摘要

Carrier multiplication (CM) is a process in which a single photon excites two or more electrons. CM is of interest to enhance the efficiency of a solar cell. Until now, CM in thin films and solar cells of semiconductor nanocrystals (NCs) has been found at photon energies well above the minimum required energy of twice the band gap. The high threshold of CM strongly limits the benefits for solar cell applications. We show that CM is more efficient in a percolative network of directly connected PbSe NCs. The CM threshold is at twice the band gap and increases in a steplike fashion with photon energy. A lower CM efficiency is found for a solid of weaker coupled NCs. This demonstrates that the coupling between NCs strongly affects the CM efficiency. According to device simulations, the measured CM efficiency would significantly enhance the power conversion efficiency of a solar cell.
机译:载流子倍增(CM)是单个光子激发两个或多个电子的过程。 CM对于提高太阳能电池的效率很重要。到目前为止,已经发现半导体纳米晶体(NCs)的薄膜和太阳能电池中的CM的光子能量远高于带隙两倍的最小所需能量。 CM的高阈值强烈限制了太阳能电池应用的优势。我们表明,在直接连接的PbSe NCs的渗滤网络中,CM更有效。 CM阈值是带隙的两倍,并且随着光子能量的增加而呈阶梯状增加。对于耦合NC较弱的实体,发现CM效率较低。这表明NC之间的耦合强烈影响CM效率。根据设备模拟,测得的CM效率将显着提高太阳能电池的功率转换效率。

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