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