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Updated: May 2, 2026

Polycrystalline Silicon Thin-film Solar cells with Plasmonic-enhanced Light-trapping
Published on: July 2, 2012
Extreme light absorption by multiple plasmonic layers on upgraded metallurgical grade silicon solar cells
Duck Hyun Lee1, Jae Young Kwon, Stephen Maldonado
1Department of Materials Science and Engineering and ‡Department of Chemistry, University of Michigan , Ann Arbor, Michigan 48109, United States.
Abstract:
We fabricate high-efficiency, ultrathin (∼12 μm), flexible, upgraded metallurgical-grade polycrystalline silicon solar cells with multiple plasmonic layers precisely positioned on top of the cell to dramatically increase light absorption. This scalable approach increases the optical absorptivity of our solar cells over a broad range of wavelengths, and they achieve efficiencies η ≈ 11%. Detailed studies on the electrical and optical properties of the developed solar cells elucidate the light absorption contribution of each individual plasmonic layer. Finite-difference time-domain simulations were also performed to yield further insights into the obtained results. We anticipate that the findings from this work will provide useful design considerations for fabricating a range of different solar cell systems.

