Cadmium sulfide-copper sulfide: heterojunction cell research. Quarterly Progress report-1, September 1, 1978-December 1, 1978
The CdS/Cu/sub 2/S cell development effort has now shifted to the planar junction cell. It has been shown that this junction gives a higher open circuit voltage than that achieved with the highly textured cell structure. Optical measurements have shown that applying a two-layer anti-reflection coating to the planar cell does not achieve the high photon economy shown by the textured structure. Total reflectance measurements have revealed that this is due to the lack of light trapping in the planar structure. Modified cell designs are now being developed with the planar junction necessary for high open circuit voltage while achieving the necessary light trapping. Work on the (CdZn)S/Cu/sub 2/S cell has revealed that cell performance is extremely sensitive to the method of Cu/sub 2/S production. Appropriate structural studies have been initiated to identify the underlying reasons. Theoretical analysis and modeling of the current flow in the Cu/sub 2/S layer has shown that the conventional one-dimensional analysis can lead to significant errors in interpreting the effects of sheet resistance. A rigorous two-dimensional current analysis is being conducted. The importance of the changes in absorption coefficient of the Cu/sub 2/S stoichiometry has been identified and the relation between stoichiometry, resistivity and absorption coefficient derived. On the basis of a review of the encapsulation task in the large scale silicon array program it has been determined that inorganic glasses are probably the only viable encapsulant for a CdS/Cu/sub 2/S cell.
- Research Organization:
- Delaware Univ., Newark (USA). Inst. of Energy Conversion
- DOE Contract Number:
- EG-77-C-01-4042
- OSTI ID:
- 5447784
- Report Number(s):
- DSE-4042-1
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
14 SOLAR ENERGY
140501* -- Solar Energy Conversion-- Photovoltaic Conversion
ANTIREFLECTION COATINGS
CADMIUM COMPOUNDS
CADMIUM SULFIDE SOLAR CELLS
CADMIUM SULFIDES
CARRIER DENSITY
CHALCOGENIDES
COATINGS
COPPER COMPOUNDS
COPPER SULFIDES
DATA
DATA FORMS
DESIGN
DIRECT ENERGY CONVERTERS
ELECTRIC CONDUCTIVITY
ELECTRIC POTENTIAL
ELECTRICAL PROPERTIES
ENCAPSULATION
EQUIPMENT
FILL FACTORS
GRAPHS
INFORMATION
INORGANIC PHOSPHORS
ISOLATED VALUES
OPTICAL PROPERTIES
PERFORMANCE
PHOSPHORS
PHOTOELECTRIC CELLS
PHOTOVOLTAIC CELLS
PHYSICAL PROPERTIES
RECOMBINATION
REFLECTIVITY
RESEARCH PROGRAMS
SOLAR CELLS
SOLAR EQUIPMENT
SULFIDES
SULFUR COMPOUNDS
SURFACE PROPERTIES
TEXTURE
TRANSITION ELEMENT COMPOUNDS
ZINC COMPOUNDS
ZINC SULFIDES
140501* -- Solar Energy Conversion-- Photovoltaic Conversion
ANTIREFLECTION COATINGS
CADMIUM COMPOUNDS
CADMIUM SULFIDE SOLAR CELLS
CADMIUM SULFIDES
CARRIER DENSITY
CHALCOGENIDES
COATINGS
COPPER COMPOUNDS
COPPER SULFIDES
DATA
DATA FORMS
DESIGN
DIRECT ENERGY CONVERTERS
ELECTRIC CONDUCTIVITY
ELECTRIC POTENTIAL
ELECTRICAL PROPERTIES
ENCAPSULATION
EQUIPMENT
FILL FACTORS
GRAPHS
INFORMATION
INORGANIC PHOSPHORS
ISOLATED VALUES
OPTICAL PROPERTIES
PERFORMANCE
PHOSPHORS
PHOTOELECTRIC CELLS
PHOTOVOLTAIC CELLS
PHYSICAL PROPERTIES
RECOMBINATION
REFLECTIVITY
RESEARCH PROGRAMS
SOLAR CELLS
SOLAR EQUIPMENT
SULFIDES
SULFUR COMPOUNDS
SURFACE PROPERTIES
TEXTURE
TRANSITION ELEMENT COMPOUNDS
ZINC COMPOUNDS
ZINC SULFIDES