Simulation and optimization performance of GaAs/GaAs0.5Sb0.5/GaSb mechanically stacked tandem solar cells

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Y.R. Tayubi, A. Suhandi, A. Samsudin, P. Arifin, Supriyatman

2018 Journal of Physics: Conference Series Vol. 1013 Issue 1 Conference paper Cited by 0 SDG 7 Quartile

Abstract

Different approaches have been made in order to reach higher solar cells efficiencies. Concepts for multilayer solar cells have been developed. This can be realised if multiple individual single junction solar cells with different suitably chosen band gaps are connected in series in multi-junction solar cells. In our work, we have simulated and optimized solar cells based on the system mechanically stacked using computer simulation and predict their maximum performance. The structures of solar cells are based on the single junction GaAs, GaAs0.5Sb0.5 and GaSb cells. We have simulated each cell individually and extracted their optimal parameters (layer thickness, carrier concentration, the recombination velocity, etc), also, we calculated the efficiency of each cells optimized by separation of the solar spectrum in bands where the cell is sensible for the absorption. The optimal values of conversion efficiency have obtained for the three individual solar cells and the GaAs/GaAs0.5Sb0.5/GaSb tandem solar cells, that are: η = 19,76% for GaAs solar cell, η = 8,42% for GaAs0,5Sb0,5 solar cell, η = 4, 84% for GaSb solar cell and η = 33,02% for GaAs/GaAs0.5Sb0.5/GaSb tandem solar cell. © Published under licence by IOP Publishing Ltd.

Affiliations

Department of Physics Education, Universitas Pendidikan Indonesia, Indonesia; Department of Physics, Institut Teknologi Bandung, Indonesia; Department of Physics Education, Universitas Tadulako, Indonesia

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