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Multi-junction solar cells and novel structures for solar cell applications

机译:多结太阳能电池和用于太阳能电池应用的新型结构

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摘要

The present status of R & D program for super-high efficiency III-V compound multi-junction solar cells in the New Sunshine Project in Japan is presented. As a result of InGaP top cell material quality improvement, development of optically and electrically low-loss double-heterostructure InGaP tunnel junction, photon and carrier confinements, and lattice matching between active cell layers and substrate, InGaP/InGaAs/Ge monolithic cascade 3-junction cells with an efficiency of 31.7% at 1-sun AM1.5 and InGaP/GaAs//InGaAs mechanically stacked 3-junction cells with the highest (world-record) efficiency of 33.3% at 1-sun AM1.5 have been realized. As an approach for low-cost and high-efficiency cells, better radiation resistance of GaAs thin-film solar cells with novel structures fabricated on Si substrates has also been demonstrated. Novel structures such as Bragg reflector and super-lattice structures are found to show a better initial cell performance and radiation resistance since those layers act as buffer layers to reduce dislocations, and act as a back-surface field and back-surface reflector layers. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 14]
机译:介绍了日本新阳光项目中超高效III-V复合多结太阳能电池研发计划的现状。由于提高了InGaP顶层电池材料的质量,开发了光学和电学上低损耗的双异质结构InGaP隧道结,光子和载流子限制,以及有源单元层与衬底之间的晶格匹配,InGaP / InGaAs / Ge单片级联3-已经实现了在1-sun AM1.5时效率为31.7%的结电池和InGaP / GaAs // InGaAs机械堆叠3结电池,在1-sun AM1.5时效率最高(33.3%)的世界纪录。作为用于低成本和高效率电池的方法,还已经证明了在Si衬底上制造的具有新颖结构的GaAs薄膜太阳能电池具有更好的抗辐射性。发现诸如布拉格反射器和超晶格结构的新颖结构表现出更好的初始电池性能和抗辐射性,因为这些层充当缓冲层以减少位错,并充当背面场和背面反射层。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:14]

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