Silicon-on ceramic process. Silicon sheet growth and device development for the large-area silicon sheet and cell development tasks of the low-cost solar array project. Quarterly report No. 12, April 2, 1979-June 29, 1979 [electronic resource]

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Bibliographic Details
Online Access: Online Access
Format: Government Document Electronic eBook
Language:English
Published: Oak Ridge, Tenn. : distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy, 1979.
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MARC

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245 0 0 |a Silicon-on ceramic process. Silicon sheet growth and device development for the large-area silicon sheet and cell development tasks of the low-cost solar array project. Quarterly report No. 12, April 2, 1979-June 29, 1979  |h [electronic resource] 
260 |a Oak Ridge, Tenn. :  |b distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy,  |c 1979. 
300 |a Pages: 66 :  |b digital, PDF file. 
336 |a text  |b txt  |2 rdacontent. 
337 |a computer  |b c  |2 rdamedia. 
338 |a online resource  |b cr  |2 rdacarrier. 
500 |a Published through SciTech Connect. 
500 |a 07/31/1979. 
500 |a "doe/jpl/954356-2" 
500 |a Heaps, J.D.; Zook, J.D.; Koepke, B.; Chapman, P.W.; Schuldt, S.B.; Grung, B.L. 
500 |a Honeywell Corporate Material Sciences Center, Bloomington, MN (USA) 
520 3 |a The objective of this research program is to investigate the technical and economic feasibility of producing solar-cell-quality sheet silicon. We plan to do this by coating one surface of carbonized ceramic substrates with a thin layer of large-grain polycrystalline silicon from the melt. During the quarter, significant progress was demonstrated in several areas: (1) a 10-cm² cell having 9.9 percent conversion efficiency (AM1, AR) was fabricated; (2) the Honeywall-sponsored SCIM coating development succeeded in producing a 225-cm² layer of sheet silicon (18 inches x 2 inches); and (3) 100 ..mu..m-thick coatings at pull speed of 0.15 cm/sec wer$obta9ned, although apoproximately 50 percent of the layer exhibited dendritic growth. Other results and accomplishments during the quarter are reported in detail. (WHK) 
536 |b NAS-7-100-954356. 
650 7 |a Mullite.  |2 local. 
650 7 |a Deposition.  |2 local. 
650 7 |a Mathematical Models.  |2 local. 
650 7 |a Direct Energy Converters.  |2 local. 
650 7 |a Equipment.  |2 local. 
650 7 |a Inorganic Ion Exchangers.  |2 local. 
650 7 |a Solar Equipment.  |2 local. 
650 7 |a Coatings.  |2 local. 
650 7 |a Minerals.  |2 local. 
650 7 |a Elements.  |2 local. 
650 7 |a Solar Cells.  |2 local. 
650 7 |a Sheets.  |2 local. 
650 7 |a Economics.  |2 local. 
650 7 |a Ceramics.  |2 local. 
650 7 |a Semimetals.  |2 local. 
650 7 |a Silicon Solar Cells.  |2 local. 
650 7 |a Temperature Distribution.  |2 local. 
650 7 |a Dipped Coatings.  |2 local. 
650 7 |a Crystal Structure.  |2 local. 
650 7 |a Efficiency.  |2 local. 
650 7 |a Dip Coating.  |2 local. 
650 7 |a Silicon.  |2 local. 
650 7 |a Grain Boundaries.  |2 local. 
650 7 |a Ion Exchange Materials.  |2 local. 
650 7 |a Surface Coating.  |2 local. 
650 7 |a Photoelectric Cells.  |2 local. 
650 7 |a Polycrystals.  |2 local. 
650 7 |a Production.  |2 local. 
650 7 |a Crystals.  |2 local. 
650 7 |a Photovoltaic Cells.  |2 local. 
650 7 |a Microstructure.  |2 local. 
650 7 |a Materials Science.  |2 edbsc. 
650 7 |a Solar Energy.  |2 edbsc. 
710 1 |a United States.  |b Department of Energy.  |b Office of Scientific and Technical Information.  |4 dst. 
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952 f f |p Can circulate  |a University of Colorado Boulder  |b Online  |c Online  |d Online  |e E 1.99:doe/jpl/954356-2  |h Superintendent of Documents classification  |i web  |n 1