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Techno-economic analysis of three different substrate removal and reuse strategies for III-V solar cells

机译:三种不同的III-V太阳能电池去除和重复使用策略的技术经济分析

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The high cost of wafers suitable for epitaxial deposition of III-V solar cells has been a primary barrier to widespread use of these cells in low-concentration and one-sun terrestrial solar applications. A possible solution is to reuse the substrate many times, thus spreading its cost across many cells. We performed a bottom-up techno-economic analysis of three different strategies for substrate reuse in high-volume manufacturing: epitaxial lift-off, spalling, and the use of a porous germanium release layer. The analysis shows that the potential cost reduction resulting from substrate reuse is limited in all three strategies--not by the number of reuse cycles achievable, but by the costs that are incurred in each cycle to prepare the substrate for another epitaxial deposition. The dominant substrate-preparation cost component is different for each of the three strategies, and the cost-ranking of these strategies is subject to change if future developments substantially reduce the cost of epitaxial deposition. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:适于III-V族太阳能电池外延沉积的晶片的高成本一直是这些电池在低浓度和单日地面太阳能应用中广泛使用的主要障碍。一种可能的解决方案是多次重复使用基板,从而将其成本分散到许多单元中。我们对三种用于大批量生产中的基板重用的不同策略进行了自下而上的技术经济分析:外延剥离,剥落和使用多孔锗释放层。分析表明,在所有三种策略中,由基板重用导致的潜在成本降低都受到限制-不受可实现的重用周期数的限制,而是受每个周期为将基板准备用于另一种外延沉积而产生的成本进行限制。三种策略中每种策略的主要基板制备成本成分都不相同,如果未来的发展大大降低了外延沉积的成本,则这些策略的成本排名可能会发生变化。版权所有(c)2016 John Wiley&Sons,Ltd.

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