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Detailed balance limit of the efficiency of tandem solar cells

Journal of Physics D Applied Physics · 1980 · Vol. 13(5) · pp. 839–846

Abstract

The fundamental (detailed balance) limit of the performance of a tandem structure is presented. The model takes into account the fact that a particular cell is not only illuminated by part of the solar irradiance but also by the electroluminescence of other cells of the set. Whereas, under 1 sun irradiance, a single solar cell only converts 30% of the solar energy, a tandem structure of two cells can convert 42%, a tandem structure of three cells can convert 49%, etc. Under the highest possible light concentration, these efficiencies are 40% (one cell), 55% (two cells), 63% (three cells), etc. The model also allows us to predict the ideal efficiency of a stack with an infinite number of solar cells. Such a tandem system can convert 68% of the unconcentrated sunlight, and 86% of the concentrated sunlight.

solar cell performance optimizationThermal Radiation and Cooling TechnologiesSolar Thermal and Photovoltaic SystemsTandemStack (abstract data type)IrradianceSolar cellLimit (mathematics)SunlightPhotovoltaic systemDetailed balancePhysicsOptics
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References
Detailed Balance Limit of Efficiency of<i>p-n</i>Junction Solar Cells
Journal of Applied Physics · 1961 · 12,706 citations
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