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15.3% AM1.5G Efficiency GaAs Solar Cells Fabricated via an Epitaxy-Free Process

  • California Institute of Technology
  • Leibniz Institute for Crystal Growth

Research output: Contribution to journalArticlepeer-review

Abstract

We report simple and potentially low-cost techniques for creating high-quality n-type gallium arsenide (GaAs) and GaAs p/n junctions and fabricate GaAs p/n junction solar cells. Detailed-balance modeling suggests that 20% AM1.5G efficiency p/n homojunction devices may be possible if the surface doping concentration can be limited to values less than ~ 5x1019cm-3. Our process exploits an open-tube, vapor-phase, deposition-free, zinc diffusion technique for forming p-type layers in melt-grown n-GaAs substrates that results in sheet resistances less than 1 k..omega../[]. In addition, we have improved the minority carrier diffusion lengths of melt-grown GaAs from less than one micron to over five microns using an open-tube, vacuum-free, annealing process which reduces the density of EL2 midgap defects. Finally, we have combined these advances to fabricate epitaxy-free, GaAs solar cells with a validated AM1.5G efficiency of 15.3%.
Original languageAmerican English
Pages (from-to)643-651
Number of pages9
JournalIEEE Journal of Photovoltaics
Volume16
Issue number5
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/JA-5K00-92498

Keywords

  • gallium arsenide (GaAs)
  • photovoltaic cells
  • semiconductor device doping

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