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  4. Grain control in directional solidification of photovoltaic silicon
 
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Grain control in directional solidification of photovoltaic silicon

Journal
Journal of Crystal Growth
Journal Volume
360
Journal Issue
1
Pages
68-75
Date Issued
2012
Author(s)
Lan, C.W.
Lan, W.C.
Lee, T.F.
Yu, A.
Yang, Y.M.
Hsu, W.C.
Hsu, B.
CHUNG-WEN LAN  
DOI
10.1016/j.jcrysgro.2012.01.007
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/444865
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84867525712&doi=10.1016%2fj.jcrysgro.2012.01.007&partnerID=40&md5=2238d8cda3ce8459960384bee6431dc0
Abstract
Directional solidification (DS) has become the major process for growing multi-crystalline silicon (mc-Si) for solar cells in the photovoltaic industry. The control of grains, as well as the grain boundaries, is particularly important to the crystal quality, and thus the solar cell efficiency. In this paper, we review the progress in the grain control of DS mc-Si from lab-scale to industrial-scale experiments. The control of the growth front was found effective in improving the grain size, but the grain size was found decreased with growth due to the sub-grain formation. With a better control of nucleation and grain competition by increasing the undercooling through enhanced uniform or spot cooling, grains with more Σ3 or twin boundaries were obtained. As the grain size increased with height, the growth of dislocations was found much slower than that without grain growth. The conversion efficiency of the solar cells fabricated from the wafers with grain control was significantly improved. Moreover, the seeded growth was also discussed. © 2012 Elsevier B.V.
SDGs

[SDGs]SDG7

[SDGs]SDG9

Other Subjects
Crystal qualities; Grain size; Growth front; Industrial-scale experiment; Multi-crystalline silicon; Photovoltaic; Photovoltaic industry; Seeded growth; Semiconducting materials; Solar cell efficiencies; Twin boundaries; Conversion efficiency; Grain boundaries; Grain size and shape; Nanostructured materials; Silicon; Silicon wafers; Solar cells; Solidification; Undercooling; Grain growth
Type
conference paper

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