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Cadmium sulfide/copper sulfide heterojunction cell research : Technical progress report no. 1

Author: J R Szedon; F A Shirland; W J Biter; Westinghouse Electric Corporation. Research & Development Center.; United States. Department of Energy.
Publisher: Washington, DC : United States Government Printing Office, 1978.
Edition/Format:   Print book : National government publication : EnglishView all editions and formats
Database:WorldCat
Summary:
An approach for the research effort required to meet the program objective is described, leading to an outline of nine tasks comprising the planned program. Results of effort applied to tasks during the first quarter effort are described. Highlights include fabrication and evaluation of cells in Mo foil substrates, a new chemical etch method which may allow easy, rapid determination of CdS grain diameters in films,  Read more...
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Material Type: Government publication, National government publication
Document Type: Book
All Authors / Contributors: J R Szedon; F A Shirland; W J Biter; Westinghouse Electric Corporation. Research & Development Center.; United States. Department of Energy.
OCLC Number: 4985066
Notes: "SAN-1577-1."
"78-9F3-CADSO-R1."
"July 31, 1978".
Description: iii, 19 pages : illustrations ; 28 cm
Responsibility: by J.R. Szedon, F.A. Shirland, W.J. Biter.

Abstract:

An approach for the research effort required to meet the program objective is described, leading to an outline of nine tasks comprising the planned program. Results of effort applied to tasks during the first quarter effort are described. Highlights include fabrication and evaluation of cells in Mo foil substrates, a new chemical etch method which may allow easy, rapid determination of CdS grain diameters in films, and preparation and preliminary evaluation of cell structures on single crystal CdS substrates. Several problems will require special effort in the future: poor adhesion of CdS film to Zn-plated Cu foil substrates and a high incidence of film defects attributed to particle spatter from the CdS evaporation source.

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