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CHARACTERIZATION OF 1.0 EV GaInNAsSb SOLAR CELLS FOR MULTIJUNCTION APPLICATIONS AND THE EFFECT OF ANNEALING

机译:多功能应用的1.0 EV GaInNAsSb太阳能电池的表征及其退火效应

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This work focuses on the characterization of 1.0 eV GalnNAsSb solar cells for application to the high efficiency multijunction solar cells. In the multijunction scheme such as GaInP / GaAs / GaInNAsSb and GaInP / GaAs / GaInNAsSb / Ge, the thickness of the GaInNAsSb absorber should be thicker than 2 μm to ensure optimal amount of current generation matched to those of the other subcells. In this study, 1.0 eV GaInNAsSb thin films and solar cells grown by molecular beam epitaxy were investigated. For the purpose of improving the material quality, post-growth annealing was applied. After the annealing, photoluminescence efficiency together with the carrier recombination rate was found improved. The spectral responses in external quantum efficiency measurements at wavelengths longer than 870 nm increased with increasing the GaInNAsSb thicknesses, and reaches close to 90% for the 2.0 nm-thick device. In order to characterize further the multijunction solar cell properties, the 2.0 μm device was mechanically connected with a GaInP / GaAs dual-junction cell in series. The light Ⅰ-Ⅴ measurement was carried out and 25.9% of efficiency was achieved for the mechanically connected triple-junction structure under the AM-1.5 spectrum.
机译:这项工作集中于1.0 eV GalnNAsSb太阳能电池的表征,以应用于高效多结太阳能电池。在诸如GaInP / GaAs / GaInNAsSb和GaInP / GaAs / GaInNAsSb / Ge的多结方案中,GaInNAsSb吸收体的厚度应大于2μm,以确保与其他子电池相匹配的最佳电流产生量。在这项研究中,研究了1.0 eV GaInNAsSb薄膜和通过分子束外延生长的太阳能电池。为了改善材料质量,应用了生长后退火。退火后,发现光致发光效率和载流子复合率一起提高。随着GaInNAsSb厚度的增加,外部量子效率测量中波长大于870 nm的光谱响应会增加,对于2.0 nm厚的器件,其光谱响应接近90%。为了进一步表征多结太阳能电池的性能,将2.0μm器件与GaInP / GaAs双结电池机械串联。在AM-1.5光谱下,对机械连接的三结结构进行了Ⅰ-Ⅴ光测量,效率达到25.9%。

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