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GaSb-Based Solar Cells for Full Solar Spectrum Energy Harvesting

机译:基于GaSb的太阳能电池,用于完整的太阳光谱能量收集

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In this work, a multijunction solar cell is developed on a GaSb substrate that can efficiently convert the long-wavelength photons typically lost in a multijunction solar cell into electricity. A combination of modeling and experimental device development is used to optimize the performance of a dual junction GaSb/InGaAsSb concentrator solar cell. Using transfer printing, a commercially available GaAs-based triple junction cell is stacked mechanically with the GaSb-based materials to create a four-terminal, five junction cell with a spectral response range covering the region containing >99% of the available direct-beam power from the Sun reaching the surface of the Earth. The cell is assembled in a mini-module with a geometric concentration ratio of 744 suns on a two-axis tracking system and demonstrated a combined module efficiency of 41.2%, measured outdoors in Durham, NC. Taking into account the measured transmission of the optics gives an implied cell efficiency of 44.5%.
机译:在这项工作中,在GaSb基板上开发了多结太阳能电池,该器件可以有效地将通常在多结太阳能电池中损失的长波长光子转换为电能。建模与实验设备开发相结合,可用于优化双结GaSb / InGaAsSb集中器太阳能电池的性能。使用转移印刷,将市售的基于GaAs的三结电池与基于GaSb的材料机械堆叠,以创建四端,五结电池,其光谱响应范围覆盖了包含超过99%的直接光束的区域来自太阳的能量到达地球表面。该电池在两轴跟踪系统上组装成具有744个太阳的几何集中率的微型模块,在北卡罗来纳州达勒姆市户外测量,其组合模块效率为41.2%。考虑到光学元件的测量透射率,隐含的电池效率为44.5%。

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