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InP/Ga0.47In0.53As monolithic, two-junction, three-terminal tandem solar cellsThe work presented has focussed on increasing the efficiency of InP-based solar cells through the development of a high-performance InP/Ga(0.47)In(0.53)As two-junction, three-terminal monolithic tandem cell. Such a tandem is particularly suited to space applications where a radiation-hard top cell (i.e., InP) is required. Furthermore, the InP/Ga(0.47)In(0.53)As materials system is lattice matched and offers a top cell/bottom cell bandgap differential (0.60 eV at 300 K) suitable for high tandem cell efficiencies under AMO illumination. A three-terminal configuration was chosen since it allows for independent power collection from each subcell in the monolithic stack, thus minimizing the adverse impact of radiation damage on the overall tandem efficiency. Realistic computer modeling calculations predict an efficiency boost of 7 to 11 percent from the Ga(0.47)In(0.53)As bottom cell under AMO illumination (25 C) for concentration ratios in the 1 to 1000 range. Thus, practical AMO efficiencies of 25 to 32 percent appear possible with the InP/Ga(0.47)In(0.53)As tandem cell. Prototype n/p/n InP/Ga(0.47)In(0.53)As monolithic tandem cells were fabricated and tested successfully. Using an aperture to define the illuminated areas, efficiency measurements performed on a non-optimized device under standard global illumination conditions (25 C) with no antireflection coating (ARC) give 12.2 percent for the InP top cell and 3.2 percent for the Ga(0.47)In(0.53)As bottom cell, yielding an overall tandem efficiency of 15.4 percent. With an ARC, the tandem efficiency could reach approximately 22 percent global and approximately 20 percent AMO. Additional details regarding the performance of individual InP and Ga(0.47)In(0.53)As component cells, fabrication and operation of complete tandem cells and methods for improving the tandem cell performance, are also discussed.
Document ID
19910009878
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Wanlaas, M. W.
(Midwest Research Inst. Golden, CO, United States)
Gessert, T. A.
(Midwest Research Inst. Golden, CO, United States)
Horner, G. S.
(Midwest Research Inst. Golden, CO, United States)
Emery, K. A.
(Midwest Research Inst. Golden, CO, United States)
Coutts, T. J.
(Midwest Research Inst. Golden, CO, United States)
Date Acquired
September 6, 2013
Publication Date
January 1, 1991
Publication Information
Publication: NASA, Lewis Research Center, Space Photovoltaic Research and Technology, 1989
Subject Category
Energy Production And Conversion
Accession Number
91N19191
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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