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Luminescent Solar Concentration with Semiconductor Nanorods and Transfer-Printed Micro-Silicon Solar Cells

机译:半导体纳米棒和转移印刷微硅太阳能电池的发光太阳能聚光

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We utilize CdSe/CdS seeded nanorods as a tunable lumophore for luminescent concentration. Transfer-printed, ultrathin crystalline Si solar cells are embedded directly into the luminescent concentrator, allowing the study of luminescent concentrators with an area over 5000 times the area of the solar cell. By increasing the size of the CdS rod with respect to the luminescent CdSe seed, the reabsorption of propagating photons is dramatically reduced. At long luminescence propagation distances, this reduced reabsorption can overcome the diminished quantum yield inherent to the larger semiconductor structures, which is studied with lifetime spectroscopy. A Monte Carlo ray tracing model is developed to explain the performance of the luminescent concentrator and is then used as a design tool to determine the effect of luminescence trapping on the concentration of light using both CdSe/CdS nanorods and a model organic dye. We design an efficient luminescence trapping structure that should allow the luminescent concentrator based on CdSe/CdS nanorods to operate in the high-concentration regime.
机译:我们利用CdSe / CdS接种的纳米棒作为发光浓度的可调发光体。转移印刷的超薄晶体硅太阳能电池直接嵌入到发光集中器中,从而可以研究面积超过太阳能电池面积5000倍的发光集中器。通过增加CdS棒相对于发光CdSe种子的尺寸,可以大大减少传播的光子的重吸收。在较长的发光传播距离处,这种减少的重吸收可以克服较大半导体结构固有的量子产率下降,这已通过寿命光谱进行了研究。建立了蒙特卡洛射线追踪模型来解释发光聚光器的性能,然后将其用作设计工具,以确定使用CdSe / CdS纳米棒和模型有机染料进行的光阱捕获对光浓度的影响。我们设计了一种有效的发光捕获结构,该结构应允许基于CdSe / CdS纳米棒的发光聚光器在高浓度范围内运行。

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