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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Semiconductor Nanocrystals as Luminescent Down-Shifting Layers To Enhance the Efficiency of Thin-Film CdTe/CdS and Crystalline Si Solar Cells
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Semiconductor Nanocrystals as Luminescent Down-Shifting Layers To Enhance the Efficiency of Thin-Film CdTe/CdS and Crystalline Si Solar Cells

机译:半导体纳米晶体作为发光下移层,可提高薄膜CdTe / CdS和晶体硅太阳能电池的效率

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摘要

A simple optical model is presented to describe the influence of a planar luminescent down-shifting layer (LDSL) on the external quantum efficiencies of photovoltaic solar cells. By employing various visible light-emitting LDSLs based on CdTe quantum dots or CdSe/CdS core—shell quantum dots and tetrapods, we show enhancement in the quantum efficiencies of thin-film CdTe/CdS solar cells predominantly in the ultraviolet regime, the extent of which depends on the photoluminescence quantum yield (PLQY) of the quantum dots. Similarly, a broad enhancement in the quantum efficiencies of crystalline Si solar cells, from ultraviolet to visible regime, can be expected for an infrared emitting LDSL based on PbS quantum dots. A PLQY of 80% or higher is generally required to achieve a maximum possible short-circuit current increase of 16 and 50% for the CdTe/CdS and crystalline Si solar cells, respectively. As also demonstrated in this work, the model can be conveniently extended to incorporate LDSLs based on organic dyes or upconverting materials.
机译:提出了一个简单的光学模型来描述平面发光下移层(LDSL)对光伏太阳能电池外部量子效率的影响。通过使用基于CdTe量子点或CdSe / CdS核-壳量子点和四脚架的各种可见光发射LDSL,我们显示出薄膜CdTe / CdS太阳能电池的量子效率提高,主要是在紫外线范围内,这取决于量子点的光致发光量子产率(PLQY)。类似地,对于基于PbS量子点的红外发射LDSL,可以预期晶体硅太阳能电池的量子效率从紫外线到可见光的大幅度提高。通常需要80%或更高的PLQY才能分别使CdTe / CdS和晶体Si太阳能电池的最大短路电流增加16%和50%。正如这项工作所证明的那样,该模型可以方便地扩展以包含基于有机染料或上转换材料的LDSL。

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