2000Unpublished venueRequires access

30% monolithic tandem concentrator solar cells for concentrations exceeding 1000 suns

Andreas W. Bett, Frank Dimroth, G. Lange, M. Meusel, R. Beckert, Moritz Hein, Sascha van Riesen, U. Schubert

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Abstract

Results of a cost study for concentrator systems are discussed. In this context it is concluded that high-concentration and high-efficiency solar cells are beneficial for lowering the cost of PV produced energy. MOVPE-grown Ga/sub 0.35/P/Ga/sub 0.83/In/sub 0.17/As monolithic tandem cells are developed for the application in such high-concentration systems. These solar cell structures are grown lattice mismatched on GaAs substrates. An efficiency of >31 % at 300/spl times/ AM 1.5D and around 30 % at a 1000/spl times/ concentration was measured. An all-glass test module with an aperture area of 64 cm/sup 2/ was built up and showed an efficiency of >24 % measured under outdoor conditions. The module has a geometrical concentration factor of 123. This result can be further improved by increasing the concentration ratio and optimizing the cell structure.

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What this paper is about

Results of a cost study for concentrator systems are discussed. In this context it is concluded that high-concentration and high-efficiency solar cells are beneficial for lowering the cost of PV produced energy. MOVPE-grown Ga/sub 0.35/P/Ga/sub 0.83/In/sub 0.17/As monolithic tandem cells are developed for the application in such high-concentration systems. These solar cell structures are grown lattice mismatched on GaAs substrates. An efficiency of >31 % at 300/spl times/ AM 1.5D and around 30 % at a 1000/spl times/ concentration was measured. An all-glass test module with an aperture area of 64 cm/sup 2/ was built up and showed an efficiency of >24 % measured under outdoor conditions. The module has a geometrical concentration factor of 123. This result can be further improved by increasing the concentration ratio and optimizing the cell structure.

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Available abstract

Results of a cost study for concentrator systems are discussed. In this context it is concluded that high-concentration and high-efficiency solar cells are beneficial for lowering the cost of PV produced energy. MOVPE-grown Ga/sub 0.35/P/Ga/sub 0.83/In/sub 0.17/As monolithic tandem cells are developed for the application in such high-concentration systems. These solar cell structures are grown lattice mismatched on GaAs substrates. An efficiency of >31 % at 300/spl times/ AM 1.5D and around 30 % at a 1000/spl times/ concentration was measured. An all-glass test module with an aperture area of 64 cm/sup 2/ was built up and showed an efficiency of >24 % measured under outdoor conditions. The module has a geometrical concentration factor of 123. This result can be further improved by increasing the concentration ratio and optimizing the cell structure.

Key concepts: Suns in alchemy, Concentrator, Tandem, Materials science, Metalorganic vapour phase epitaxy, Optoelectronics, Energy conversion efficiency, Aperture (computer memory)

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