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Continuous coating of silicon-on-ceramicGrowth of sheet silicon on low-cost substrates has been demonstrated by the silicon coating with inverted meniscus (SCIM) technique. A mullite-based ceramic substrate is coated with carbon and then passed over a trough of molten silicon with a raised meniscus. Solidification occurs at the trailing edge of the downstream meniscus, producing a silicon-on-ceramic (SOC) layer. Meniscus shape and stability are controlled by varying the level of molten silicon in a reservoir connected to the trough. The thermal conditions for growth and the crystallographic texture of the SOC layers are similar to those produced by dip-coating, the original technique of meniscus-controlled growth. The thermal conditions for growth have been analyzed in some detail. The analysis correctly predicts the velocity-thickness relationship and the liquid-solid interface shape for dip-coating, and appears to be equally applicable to SCIM-coating. Solar cells made from dip-coated SOC material have demonstrated efficiencies of 10% on 4-sq cm cells and 9.9% on 10-sq cm cells.
Document ID
19810042679
Acquisition Source
Legacy CDMS
Document Type
Conference Proceedings
Authors
Heaps, J. D.
(Honeywell Corporate Technology Center Lexington, MA, United States)
Schuldt, S. B.
(Honeywell Corporate Technology Center Lexington, MA, United States)
Grung, B. L.
(Honeywell Corporate Technology Center Lexington, MA, United States)
Zook, J. D.
(Honeywell Corporate Technology Center Lexington, MA, United States)
Butter, C. D.
(Honeywell Corporate Technology Center Bloomington, Minn., United States)
Date Acquired
August 11, 2013
Publication Date
January 1, 1980
Subject Category
Engineering (General)
Meeting Information
Meeting: Photovoltaic Specialists Conference
Location: San Diego, CA
Start Date: January 7, 1980
End Date: January 10, 1980
Accession Number
81A27083
Distribution Limits
Public
Copyright
Other

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