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Development of a high efficiency mechanically stacked multi-junction solar cell

机译:高效机械堆叠多结太阳能电池的开发

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摘要

An affinity for high performance solar cells in the space market, as well as the development of new engineered substrate technology, has warranted a re-consideration of mechanically stacked solar cell technologies. Mechanically stacked approaches result in a wider materials and interconnectivity design space compared to monolithic approaches. We are investigating the Smart-cut technology to produce InP/Si engineered substrates. Successful transfer of InP films to a silicon substrate has been demonstrated, and the resulting structure is mechanically stable after MOCVD growth. The electrical resistivity of the bonded interface is low, despite the presence of a very thin interfacial oxide. Work continues in regard to producing an epi-ready surface for the subsequent growth of high quality MOCVD layers. Tandem cell interconnectivity approaches are being investigated which can result in minimal parasitic loss and are also simple to process. Bottom tandem prototype cells have been fabricated on InP, with encouraging results. New AR coatings have also been designed to improve the optical coupling to these extremely wide-band solar cells.
机译:在太空市场对高性能太阳能电池的亲和力以及新的工程衬底技术的发展,都保证了对机械堆叠太阳能电池技术的重新考虑。与单块方法相比,机械堆叠的方法导致更广泛的材料和互连设计空间。我们正在研究Smart-cut技术,以生产InP / Si工程衬底。已经证明了将InP薄膜成功转移到硅衬底上,并且在MOCVD生长之后,所得结构在机械上是稳定的。尽管存在非常薄的界面氧化物,但结合界面的电阻率仍然很低。关于产生用于随后的高质量MOCVD层的生长的epi准备表面的工作继续进行。正在研究串联电池互连的方法,这种方法可以使寄生损失降至最低,并且易于处理。底部串联原型电池已经在InP上制造,结果令人鼓舞。还设计了新的增透膜,以改善与这些极宽带太阳能电池的光耦合。

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