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Toward >25 Efficient Monolithic Epitaxial GaAsP/Si Tandem Solar Cells

机译:朝着> 25%效率的单片外延GaAsP / Si串联太阳能电池发展

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We report here on progress made in the development of >20% efficient monolithic epitaxial III-V/Si tandem solar cells. Following our prior demonstration of a GaAs0.75P0.25/Si tandem cell with verified AM1.5G efficiency of 20.1%, we have undertaken intensive efforts aimed at optimization of the top and bottom subcells, involving both materials quality improvement and detailed device structure refinement. To date we have thus demonstrated 21.8% AM1.5G GaAs0.75P0.25/Si tandem cells making use of an optimized, but still defect-limited GaAsP top cell combined with a simple diffusion-processed (emitter and back-surface field) Si bottom cell. With recent development of a low dislocation density III-V-on-Si epitaxial materials platform, as well as bottom cell enhancements for photon management, analytical performance loss analysis and efficiency projections indicate that >25% is achievable in the near-term, and 30% within reach with additional holistic optimization.
机译:我们在这里报告在开发效率> 20%的单片外延III-V / Si串联太阳能电池方面取得的进展。在我们先前展示了经验证的AM1.5G效率为20.1%的GaAs0.75P0.25 / Si串联电池之后,我们进行了深入的努力,旨在优化顶部和底部子电池,包括材料质量改进和详细的器件结构改进。因此,到目前为止,我们已经证明了21.8%的AM1.5G GaAs0.75P0.25 / Si串联电池,该电池使用了经过优化但仍受缺陷限制的GaAsP顶部电池,并结合了简单的扩散处理(发射极和背面场)Si底部单元格。随着低位错密度III-V-on-Si外延材料平台的最新开发,以及用于光子管理的底部电池的增强,分析性能损失分析和效率预测表明,近期可实现> 25%的效率,并且30%的覆盖范围可进行额外的整体优化。

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