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首页> 外文期刊>Journal of nanomaterials >Theoretical Study of the Effects of Carrier Transport, Capture, and Escape Processes on Solar Cells with Embedded Nanostructures
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Theoretical Study of the Effects of Carrier Transport, Capture, and Escape Processes on Solar Cells with Embedded Nanostructures

机译:载流子传输,俘获和逃逸过程对具有嵌入式纳米结构的太阳能电池影响的理论研究

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摘要

A theoretical model is proposed to study the effects of carrier transport, escape, and capture processes on solar cells with embedded nanostructures.The theoretical results clearly indicate that the carrier transport, escape, and capture times are important physical quantities affecting the performance of solar cells with embedded nanostructures and they should be fully considered in device design, such as the selection of the optimal band-gap energy of the nanostructures. The beneficial results from the embedded nanostructures cannot be warranted. Slow escape processes and long transport time will make the nanostructures act as gigantic recombination sites and cause a detrimental effect on the bulk solar cell. The results show that solar cells embedded with nanostructures of very small band-gap energymaterials will suffer fromextremely slowescape processes due to a very large potential difference between the nanostructures and the bulk host material; therefore, their output photocurrent could be inferior to their bulk counterparts without the nanostructures.The beneficial results from the embedded nanostructures to the solar cells can only be realized by their long carrier lifetime and fast escape time.
机译:提出了一个理论模型来研究载流子的迁移,逃逸和俘获过程对具有嵌入式纳米结构的太阳能电池的影响,理论结果清楚地表明载流子的迁移,逃逸和俘获时间是影响太阳能电池性能的重要物理量。嵌入式纳米结构,它们应该在设备设计中充分考虑,例如选择纳米结构的最佳带隙能量。嵌入式纳米结构的有益结果无法保证。缓慢的逃逸过程和较长的运输时间将使纳米结构充当巨大的重组位点,并对整体太阳能电池产生不利影响。结果表明,由于纳米结构与主体材料之间存在很大的电势差,因此嵌入了非常小的带隙能量材料的纳米结构的太阳能电池将遭受极其缓慢的逸出过程。因此,它们的输出光电流可能不如没有纳米结构的大体积同类产品。嵌入式纳米结构对太阳能电池的有益结果只能通过其较长的载流子寿命和快速的逃逸时间来实现。

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