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A Highly Efficient Hybrid GaAs Solar Cell Based on Colloidal-Quantum-Dot-Sensitization

机译:基于胶体-量子点敏化的高效混合GaAs太阳能电池

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摘要

This paper presents a hybrid design, featuring a traditional GaAs-based solar cell combined with various colloidal quantum dots. This hybrid design effectively boosts photon harvesting at long wavelengths while enhancing the collection of photogenerated carriers in the ultraviolet region. The merits of using highly efficient semiconductor solar cells and colloidal quantum dots were seamlessly combined to increase overall power conversion efficiency. Several photovoltaic parameters, including short-circuit current density, open circuit voltage, and external quantum efficiency, were measured and analyzed to investigate the performance of this hybrid device. Offering antireflective features at long wavelengths and luminescent downshifting for high-energy photons, the quantum dots effectively enhanced overall power conversion efficiency by as high as 24.65% compared with traditional GaAs-based devices. The evolution of weighted reflectance as a function of the dilution factor of QDs was investigated. Further analysis of the quantum efficiency response showed that the luminescent downshifting effect can be as much as 6.6% of the entire enhancement of photogenerated current.
机译:本文提出了一种混合设计,其特点是结合了多种胶体量子点的传统基于GaAs的太阳能电池。这种混合设计有效地促进了长波长光子的收集,同时增强了紫外线区域中光生载流子的收集。无缝结合使用高效半导体太阳能电池和胶体量子点的优点,以提高整体功率转换效率。测量并分析了几个光伏参数,包括短路电流密度,开路电压和外部量子效率,以研究这种混合器件的性能。与传统的基于GaAs的器件相比,量子点在长波长处具有抗反射功能,并为高能光子提供了发光下移功能,有效地将整体功率转换效率提高了高达24.65%。研究了加权反射率随量子点稀释因子的变化。量子效率响应的进一步分析表明,发光降移效应可能高达光生电流整体增强的6.6%。

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