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Grain growth behavior in a columnar-grain-structured silicon wafer for photovoltaic application

Authors
Lee, Ye-NeugLee, Jin-SeokJang, Bo-YunKim, Joon-SooAhn, Young-SooYoon, Woo-Young
Issue Date
7월-2014
Publisher
KOREAN PHYSICAL SOC
Keywords
Silicon; Wafer; Growth; Nucleation; Photovoltaic
Citation
JOURNAL OF THE KOREAN PHYSICAL SOCIETY, v.65, no.2, pp.190 - 195
Indexed
SCIE
SCOPUS
KCI
Journal Title
JOURNAL OF THE KOREAN PHYSICAL SOCIETY
Volume
65
Number
2
Start Page
190
End Page
195
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/98020
DOI
10.3938/jkps.65.190
ISSN
0374-4884
Abstract
With direct growth technologies for obtaining ribbon-type silicon (Si) wafers from molten Si, the horizontal growth process is much faster than the vertical one in terms of the growth rate of the wafer. However, such a fast growth rate is likely to create grains of a relatively small size in the Si wafer, resulting in limited efficiency caused by grain boundary recombination. In this regard, controlling the grain growth behavior of the Si wafer with processing parameters such as the temperature of the substrate and its moving speed is very important in the horizontal growth process. The present investigation produced the experimental findings concerning the processing parameters for controlling the grain size. The size of the grains on the surface of the Si wafer increased to around 180 mu m at a lower substrate temperature and a slower the moving speed of the substrate due to the increasing thickness of the Si wafer. However, the growth rate of the grains was observed to have little relation to the variations in the wafer thickness resulting from the processing parameters unless the nucleation behavior had been controlled.
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공과대학 (신소재공학부)
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