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Super high-efficiency multi-junction and concentrator solar cells

机译:超高效多结和聚光太阳能电池

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III-V compound multi-junction (MJ) (tandem) solar cells have the potential for achieving high conversion efficiencies of over 50% and are promising for space and terrestrial applications. We have proposed AlInP-InGaP double hetero (DH) structure top cell, wide-band gap InGaP DH structure tunnel junction for sub cell interconnection, and lattice-matched InGaAs middle cell. In 2004, we have successfully fabricated world-record efficiency concentrator InGaP/InGaAs/Ge 3-junction solar cells with an efficiency of 37.4% at 200-suns AM1.5 as a result of widening top cell band gap, current matching of sub cells, precise lattice matching of sub cell materials, proposal of InGaP-Ge heteroface bottom cell, and introduction of DH-structure tunnel junction. In addition, we have realized high-efficiency concentrator InGaP/InGaAs/Ge 3-junction solar cell modules (with area of 7000 cm(2)) with an out-door efficiency of 27 %, as a result of developing high-efficiency InGaP/InGaAs/Ge 3-junction cells, low optical loss Fresnel lens and homogenizers, and designing low thermal conductivity modules. Future prospects are also presented. We have proposed concentrator III-V compound MJ solar cells as the 3rd-generation solar cells in addition to 1st-generation crystalline Si solar cells and 2nd-generation thin-film solar cells. We are now challenging to develop low-cost and high output power concentrator MJ solar cell modules with an output power of 400 W/m(2) for terrestrial applications and high-efficiency, light-weight and low-cost MJ solar cells for space applications. (c) 2006 Elsevier B.V. All rights reserved.
机译:III-V型复合多结(MJ)(串联)太阳能电池具有实现超过50%的高转换效率的潜力,并有望用于太空和地面应用。我们提出了AlInP-InGaP双异质(DH)结构顶部电池,用于子电池互连的宽带隙InGaP DH结构隧道结以及晶格匹配的InGaAs中间电池。 2004年,我们成功制造了世界纪录的效率集中器InGaP / InGaAs / Ge 3结太阳能电池,在200个太阳下,AM1.5时的效率为37.4%,这是由于拓宽了顶部电池带隙,子电池的电流匹配,子电池材料的精确晶格匹配,InGaP-Ge异质面底部电池的建议以及DH结构隧道结的引入。此外,由于开发了高效的InGaP,我们已经实现了高效的集中器InGaP / InGaAs / Ge 3结太阳能电池模块(面积为7000 cm(2)),室外效率为27% / InGaAs / Ge 3结电池,低光损耗菲涅耳透镜和均质器,并设计低导热率模块。还介绍了未来的前景。除了第一代晶体硅太阳能电池和第二代薄膜太阳能电池之外,我们还提出了聚光器III-V复合MJ太阳能电池作为第三代太阳能电池。我们现在面临的挑战是开发低成本和高输出功率的MJ太阳能电池组件,其输出功率为400 W / m(2),用于地面应用,以及高效,轻巧和低成本的MJ太阳能电池组件应用程序。 (c)2006 Elsevier B.V.保留所有权利。

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