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  4. Grain control using spot cooling in multi-crystalline silicon crystal growth
 
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Grain control using spot cooling in multi-crystalline silicon crystal growth

Journal
Journal of Crystal Growth
Journal Volume
311
Journal Issue
2
Pages
263-267
Date Issued
2009
Author(s)
Wang, T.Y.
Hsu, S.L.
Fei, C.C.
Yei, K.M.
Hsu, W.C.
CHUNG-WEN LAN  
DOI
10.1016/j.jcrysgro.2008.10.064
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/444903
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-58549104715&doi=10.1016%2fj.jcrysgro.2008.10.064&partnerID=40&md5=3e3b055106fab3a6977f291aba891197
Abstract
We report a novel idea for grain control by using spot cooling for multi-crystalline silicon (mc-Si) crystal growth. The method employs a graphite crucible with cooling spots to generate radial thermal gradients of the silicon melt for nucleation during directional solidification. The effect of cooling spots on the grown ingot was studied by minority charge carrier lifetime mapping and electron back scattered diffraction (EBSD) of the grown crystals. It was found that charge carrier lifetime for silicon crystals grown with cooling spots was higher than those grown without cooling spots. The EBSD analysis also showed the formation of dendrite structures during cooling controlled growth. Further, the proposed method was found to be feasible for industrial-scale growth of mc-Si by directional solidification, and some preliminary results are presented. © 2008 Elsevier B.V. All rights reserved.
SDGs

[SDGs]SDG7

[SDGs]SDG9

Other Subjects
Carrier lifetime; Charge carriers; Civil aviation; Cooling; Crystal growth; Crystal growth from melt; Crystalline materials; Crystallization; Crystals; Electron diffraction; Grain boundaries; Grain size and shape; Graphite; Growth (materials); Nonmetals; Photovoltaic cells; Purification; Semiconducting silicon; Semiconducting silicon compounds; Semiconductor growth; Solar cells; Solar equipment; Solidification; A1. Directional solidification; A1. Purification; A3. Grain growth; B2. Semiconducting materials; B2. Semiconducting silicon; B3. Solar cells; Grain growth
Type
journal article

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