Progress in Photovoltaics Research and Applications · 2016 · 153 citations · 18 references
EngineeringEnergy EfficiencyEnergy ConversionDifferent Substrate RemovalPhotovoltaic SystemChemical DepositionPhotovoltaicsReuse CyclesChemical EngineeringSolar Cell StructuresEpitaxial GrowthSolar Energy UtilisationMaterials ScienceElectrical EngineeringHigh CostSemiconductor Device FabricationTechno‐economic AnalysisSubstrate ReuseReuse StrategiesSolar CellsChemical Vapor DepositionSolar Cell Materials
Abstract 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 © 2016 John Wiley & Sons, Ltd.
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Extreme selectivity in the lift-off of epitaxial GaAs films
Eli Yablonovitch, T.J. Gmitter, J. P. Harbison et al. · Applied Physics Letters · 1987 · 801 citations · Full text
Materials Science, Wide-bandgap Semiconductor, Engineering +10
Solar cell efficiency tables (version 46)
Martin A. Green, Keith Emery, Yoshihiro Hishikawa et al. · Progress in Photovoltaics Research and Applications · 2015 · 525 citations · Full text
Alan Goodrich, Peter Hacke, Qi Wang et al. · Solar Energy Materials and Solar Cells · 2013 · 312 citations
Electrical Engineering, Wafer Scale Processing, Engineering +11