Rapid thermal annealing treated spin–on doped antireflective radial junction Si nanopillar solar cell

BD Choudhury, S Anand - Optics Express, 2017 - opg.optica.org
Optics Express, 2017opg.optica.org
Radial junction nanopillar Si solar cells are interesting for cost effective efficiency
improvement. Here, we address a convenient top-down fabrication of Si nanopillar solar
cells using spin-on doping and rapid thermal annealing (RTA) for conformal PN junction
formation. Broadband suppressed reflection as low as an average of 5% in the 300-1100 nm
wavelength range and un-optimized cell efficiency of 7.3% are achieved. The solar cell
performance can be improved by optimization of spin-on-doping and suitable surface …
Radial junction nanopillar Si solar cells are interesting for cost effective efficiency improvement. Here, we address a convenient top-down fabrication of Si nanopillar solar cells using spin-on doping and rapid thermal annealing (RTA) for conformal PN junction formation. Broadband suppressed reflection as low as an average of 5% in the 300-1100 nm wavelength range and un-optimized cell efficiency of 7.3% are achieved. The solar cell performance can be improved by optimization of spin-on-doping and suitable surface passivation. Overall, the all RTA processed, spin-on doped nanopillar radial junction solar cell shows a very promising route for low cost and high efficiency thin film solar cell perspectives.
opg.optica.org
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