Materials for high efficiency monolithic multigap concentrator solar cells. SERI quarterly report No. 5, 1 April-30 June 1980
Technical Report
·
OSTI ID:5113798
The objectives of this work are to develop a materials technology of the AlGaInAs and AlInAsSb mixed crystal systems. These technologies are directed towards the development of a two-gap, monolithic, lattice-matched concentrator cell with 28% or higher AM2 conversion efficiency at 500 to 1000 suns. The work to be performed is subdivided into five major tasks: (1) develop and demonstrate the technology for a grading layer of GaInAs/GaAs and low-bandgap cells in AlGaInAs/GaInAs/GaAs; (2) develop and demonstrate inter-cell tunnel junction contacts in the higher bandgap AlGaInAs alloys; (3) develop and demonstrate technology for a higher bandgap concentrator cell in AlGaInAs alloys; (4) demonstrate a complete two-gap monolithic concentrator cell with AM2 efficiency of 28% or more; and (5) investigate the potential of AlInAsSb alloys grown on InAs substrates. Progress is reported. (WHK)
- Research Organization:
- Varian Associates, Inc., Palo Alto, CA (USA)
- DOE Contract Number:
- AC02-77CH00178
- OSTI ID:
- 5113798
- Report Number(s):
- SERI/PR-8081-1-T2
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
14 SOLAR ENERGY
140501* -- Solar Energy Conversion-- Photovoltaic Conversion
ALUMINIUM ARSENIDES
ALUMINIUM COMPOUNDS
ANTIMONY COMPOUNDS
ARSENIC COMPOUNDS
ARSENIDES
CONCENTRATOR SOLAR CELLS
CRYSTAL DOPING
DESIGN
DIRECT ENERGY CONVERTERS
EFFICIENCY
ELEMENTS
EQUIPMENT
FABRICATION
GALLIUM ARSENIDE SOLAR CELLS
GALLIUM ARSENIDES
GALLIUM COMPOUNDS
GRADED BAND GAPS
INDIUM ARSENIDES
INDIUM COMPOUNDS
LATTICE PARAMETERS
PHOTOELECTRIC CELLS
PHOTOVOLTAIC CELLS
PNICTIDES
SELENIUM
SEMIMETALS
SOLAR CELLS
SOLAR EQUIPMENT
SPECTRAL RESPONSE
TEMPERATURE DEPENDENCE
140501* -- Solar Energy Conversion-- Photovoltaic Conversion
ALUMINIUM ARSENIDES
ALUMINIUM COMPOUNDS
ANTIMONY COMPOUNDS
ARSENIC COMPOUNDS
ARSENIDES
CONCENTRATOR SOLAR CELLS
CRYSTAL DOPING
DESIGN
DIRECT ENERGY CONVERTERS
EFFICIENCY
ELEMENTS
EQUIPMENT
FABRICATION
GALLIUM ARSENIDE SOLAR CELLS
GALLIUM ARSENIDES
GALLIUM COMPOUNDS
GRADED BAND GAPS
INDIUM ARSENIDES
INDIUM COMPOUNDS
LATTICE PARAMETERS
PHOTOELECTRIC CELLS
PHOTOVOLTAIC CELLS
PNICTIDES
SELENIUM
SEMIMETALS
SOLAR CELLS
SOLAR EQUIPMENT
SPECTRAL RESPONSE
TEMPERATURE DEPENDENCE