DocumentCode :
26391
Title :
Development of Innovative Application Films for Silicon Solar Cells Using a Copper–Phosphorus Alloy by an Atmospheric Sintering Process
Author :
Adachi, Shuichi ; Kato, Toshihiko ; Aoyagi, Takahiro ; Naito, Tomoyuki ; Yamamoto, Hiroshi ; Nojiri, T. ; Kurata, Yu ; Kurihara, Yosuke ; Yoshida, Manabu
Author_Institution :
Tsukuba Res. Lab., Hitachi Chem. Co., Ltd., Tsukuba, Japan
Volume :
3
Issue :
4
fYear :
2013
fDate :
Oct. 2013
Firstpage :
1178
Lastpage :
1183
Abstract :
In this paper we aim to develop copper (Cu)-based backside soldering tabs/pads for crystalline silicon (Si) solar cells using atmospheric sintering. In our previous study, we found that a Cu network can be formed in an application film (AF) by self-deoxidization when the AF consisting of copper-phosphorus (Cu-P) alloy paste is sintered in an atmospheric environment, and the Cu AF showed low electrical resistivity that satisfied the criteria for backside soldering tabs/pads. In this study, Si solar cells using Cu AF for front-side contacts were evaluated to confirm that Cu AF is applicable to Si solar cells in principle. The Cu-P alloy paste using Cu-7 mass%P particles was printed on an Si wafer and, finally, sintered at 640 °C in atmosphere. The resulting AF showed low electrical resistivity of 2.96 × 10 -5 Ωcm. The solar cell using the Cu AF and conductive glass layer had conversion efficiency (η) of 6.6%. We demonstrated the need for a barrier layer to prevent the formation of Cu 3Si compound on the Si wafer surface when applying it to Cu AF on the solar cells. Our results may improve the potential for the widespread use of an atmospheric sintered Cu AF as backside soldering tabs/pads for Si solar cells.
Keywords :
copper alloys; electrical resistivity; phosphorus alloys; silicon; sintering; solar cells; CuP; Si; atmospheric sintering process; backside soldering tabs; barrier layer; conductive glass layer; conversion efficiency; copper-phosphorus alloy; electrical resistivity; innovative application films; self deoxidization; silicon solar cells; soldering pads; Copper alloys; Copper compounds; Crystalline materials; Photovoltaic cells; Silicon; Soldering; Atmospheric sintering; Cu$_{3}$Si compound; copper application film (Cu AF); copper–phosphorus (Cu–P) alloy paste; silicon (Si) solar cells;
fLanguage :
English
Journal_Title :
Photovoltaics, IEEE Journal of
Publisher :
ieee
ISSN :
2156-3381
Type :
jour
DOI :
10.1109/JPHOTOV.2013.2270353
Filename :
6553572
Link To Document :
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