效率达41%的变质GaInP/GaInAs/Ge三结太阳能电池

F. Dimroth, W. Guter, J. Schone, E. Welser, M. Steiner, E. Oliva, A. Wekkeli, G. Siefer, S. Philipps, A. Bett
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引用次数: 28

摘要

晶格不匹配材料的使用为多结太阳能电池中最佳带隙组合的设计提供了额外的自由度。如果可以保持足够高的pn结材料质量,则可以实现比最先进的晶格匹配系统更高的转换效率。最近,在Fraunhofer ISE对中间和底部晶格不匹配为1.2%的变质GaInP/GaInAs/Ge三结太阳能电池进行的研究,在AM1.5d光谱浓度为454倍的情况下,获得了41.1%的新记录效率。本文总结了变质太阳能电池方法的主要优点,并讨论了与这种器件结构发展相关的一些挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metamorphic GaInP/GaInAs/Ge triple-junction solar cells with ≫ 41 % efficiency
The use of lattice-mismatched materials offers an additional degree of freedom to the design of an optimum bandgap combination in a multi-junction solar cell. This allows for achieving higher conversion efficiencies compared to state-of-the-art lattice-matched systems if the material quality of the pn-junctions can be kept sufficiently high. Work performed at the Fraunhofer ISE on metamorphic GaInP/GaInAs/Ge triple-junction solar cells with 1.2% lattice-mismatch between the middle and bottom cell recently yielded a new record efficiency of 41.1% under 454-fold concentration of the AM1.5d spectrum. This paper summarizes the main benefits of the metamorphic solar cell approach and discusses some of the challenges associated with the development of this device structure.
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