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Multiple epitaxial lift-off of stacked GaAs solar cells for low-cost photovoltaic applications

机译:用于低成本光伏应用的堆叠GaAs太阳能电池的多个外延升降

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This paper presents a multilayer peeling from a stacked cell structure as an approach for the cost reduction of III-V solar cells. We demonstrate the separation of two-layer stacked GaAs solar cells with Al(Ga)As release layers on the GaAs substrate into individual layers without cracks. The cells in each layer peeled from the stacked structure show equivalent device performances. Thermal cycling tests with repeated heating to 85 degrees C and cooling to -40 degrees C show that the flexible GaAs thin-film cell exhibits a high durability against temperature changes. Further, a damp heat test conducted at 85 degrees C and 85% humidity indicates that the cell has long-term stability. These results suggest that the flexible GaAs thin-film cells fabricated by peeling from stacked structures have a high reliability and prove that the separation of the stacked cell structures into individual layers is effective in fabricating low-cost III-V solar cells.
机译:本文提出了一种从堆叠的电池结构剥离,作为III-V太阳能电池成本降低的方法。我们展示了双层堆叠的GaAs太阳能电池与Al(Ga)作为GaAs衬底上的剥离层的分离成单独的层,没有裂缝。从堆叠结构剥离的每层中的细胞显示了等效装置的性能。用重复加热至85℃的热循环试验和冷却至-40℃,表明柔性GaAs薄膜电池具有高耐久性的温度变化。此外,在85℃和85%湿度下进行的潮湿热试验表明该电池具有长期稳定性。这些结果表明,通过从堆叠结构剥离制造的柔性GaAs薄膜电池具有高可靠性,并且证明堆叠的电池结构分离成各个层是有效制造低成本III-V太阳能电池的有效。

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