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首页> 外文期刊>Photovoltaics, IEEE Journal of >Implications of Redesigned, High-Radiative-Efficiency GaInP Junctions on III-V Multijunction Concentrator Solar Cells
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Implications of Redesigned, High-Radiative-Efficiency GaInP Junctions on III-V Multijunction Concentrator Solar Cells

机译:重新设计的高辐射效率GaInP结对III-V多结聚光器太阳能电池的影响

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摘要

Nonradiative recombination in inverted GaInP junctions is dramatically reduced using a rear-heterojunction design rather than the more traditional thin-emitter homojunction design. When this GaInP junction design is included in inverted multijunction solar cells, the high radiative efficiency translates into both higher subcell voltage and high luminescence coupling to underlying subcells, both of which contribute to improved performance. Subcell voltages within two and four junction devices are measured by electroluminescence and the internal radiative efficiency is quantified as a function of recombination current using optical modeling. The performance of these concentrator multijunction devices is compared with the Shockley–Queisser detailed-balance radiative limit, as well as an internal radiative limit, which considers the effects of the actual optical environment in which a perfect junction may exist.
机译:使用后异质结设计,而不是更传统的薄发射极同质结设计,可显着减少反向GaInP结中的非辐射重组。当此GaInP结设计包含在反向多结太阳能电池中时,高辐射效率既可以转化为更高的子电池电压,也可以转化为与下方子电池的高发光耦合,这两者都有助于提高性能。通过电致发光测量两个和四个结器件内的子电池电压,并使用光学模型将内部辐射效率作为重组电流的函数进行量化。将这些集中器多结设备的性能与Shockley-Queisser详细平衡辐射极限以及内部辐射极限进行了比较,后者考虑了可能存在完美结的实际光学环境的影响。

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