期刊文献+

晶体硅太阳能电池正面银导电浆料的研究进展 被引量:17

Study and Market of Front-side Silver Paste for Silicon Solar Cell
下载PDF
导出
摘要 太阳能电池银浆是制造太阳能电池的主要原材料,太阳能电池银浆制造技术是高效低成本太阳能电池的关键技术。本文简介了太阳能电池结构,从太阳能电池导电银浆料的作用和性能要求出发,阐述了银浆料中各个组分对导电性能的影响、印刷适应性与导电性能的关系,并分析了国内外银浆料的现状与差异,指出了太阳能银浆料的未来发展趋势。 The Silver-pasted electronic paste is the primary material of industrial silicon solar cell. so the preparation technology of the silver-pasted electronic paste plays the key role in the performance for the solar cell. In this paper , the structure of the solar cell was introduced. From the perspective of function and properties of the silver-pasted electronic , several investigations, which focus on the relationship between component and electrical properties, as well as the relationship between screen printing and electrical properties , were discussed. In adation , the current situation and difference at home and abroad , including the future tends about the silver-pasted electronic were described, too.
出处 《信息记录材料》 2012年第2期39-46,共8页 Information Recording Materials
关键词 太阳能电池银浆 银粉 玻璃粉 有机载体 印刷性 烧结 silver-pasted electronic silver powder frit organic carrier screen printing sinter
  • 相关文献

参考文献17

  • 1丁骁,付明,陈栋,等.晶体硅太阳能电池正面栅线银浆研究--第十一届中国光伏大会暨展览会会议论文集[c]:北京:中国社会科学出版社,2010:92-94.
  • 2赵玲,谭富彬,刘林,曾德钧,王萍.太阳能电池用银导体浆料的研究[J].电子元件与材料,1996,15(3):13-16. 被引量:4
  • 3Mohamed M, Hilali. Effect of Glass Frit Chemistry on the Physical and Electrical Properties of Thick-FiIm Ag Contacts for Silicon Solar Cells. Journal of Electronic Materials, 2006,153 : 5 - 11.
  • 4敖毅伟.硅太阳能电池正面电极用银电子浆料制备及其性能的研究[D].上海:华东理工大学化学系,2010.
  • 5郑建华,张亚萍,敖毅伟,龚铁裕,丁丽华,陈国荣,杨云霞.银浆组成对硅太阳电池丝网印刷欧姆接触的影响[J].太阳能学报,2008,29(10):1274-1277. 被引量:27
  • 6湖南威能新材料科技有限公司.一种太阳能电池正面栅线用银浆及其制备方法和含该浆料制备的太阳能电池[P].中国CA102103895A.2011-06-22.
  • 7B Thuilliter, J P Boyeaux, A Kaminski, et al. Transmission Electron Microscopy and EDS Analysis of Screen-printed Contacts Formation on Multierystalline Silicon Solar Sells. Materials Science and Engineering, 2003,B102 : 58 - 62.
  • 8J Hoornstra, K M Broek, F J Granek, et al. Lead Free Metallisation Paste for Crystalline Solar Cells.. From model to Results. 31st IEEE Photovoltaic Specialisits Conference, 2005 : 1293 - 1296.
  • 9G Schubert, F Huster, P Fath. Current Transport Mechanism in printed Ag Think Film Contacts to an ntype Emitter of a Crystalline Silicon Solar Cell. 19th Europen photovoltaic Solar Energy conference, Paris, 2004: 813- 816.
  • 10M Bahr, S Dauwe, L Pham, et al. Fundamental investigations and proposed solutions to Make the Alloyed AL BSF for silicon Solar Cell. 14 th European photovoltaic Solar Energy Conference, Bangkok, 2004,401 - 406.

二级参考文献41

  • 1赵亮,周之斌,崔容强,丁尔峰,孟凡英,于化丛.SiN_x烧穿工艺下硅太阳电池结构研究[J].太阳能学报,2005,26(4):585-588. 被引量:2
  • 2史建卫,何鹏,钱乙余,袁和平.焊膏印刷技术及无铅化对其的影响[J].电子工业专用设备,2006,35(12):29-38. 被引量:7
  • 3赵玉文.我国光伏产业发展概况及思考[A].第十届中国太阳能光伏会议论文集[C].浙江:浙江大学出版社,2008,3-17.
  • 4[1]Jeffrey T. Borenstein, Maynard. Method for forming solar cell contacts and interconnection solar cells. Patent No. 5178685, 1993.
  • 5[2]Haruhiko Kano. Conductive paste, solar cells with grid electrod made of the conductive paste, and fabrication method for silicon solar cells. Pattent No. 5661041, 1997.
  • 6[3]Hirohisa Oya. Eelectrically conductive composition for a solar cell. Pattent No. 6071437, 2000.
  • 7[4]Paul G Carey, Jesse B.Thompson, Nicolas J.Colella, et al. Solar Cell Array Interconnects. Pattent No. 5466302, 1995.
  • 8M. M. Hilali, A. Rohatgi, B. To. A review and understanding of screen - printed contacts and selective - emitter formation[ A ]. 14th workshop on crystalline silicon solar cells and modules, 2004,1 - 8.
  • 9Ching- Hsi Lin, Song- Yeu Tsai, Shih- PengHsu, et al. Investigation of Ag - bulk/glassy - phase/Si heterostructures of printed Ag contacts on crystalline Si solar cells[ J]. Solar Energy Materials& Solar Cells, 2008, 92:1011 - 1015.
  • 10Mohamed M. Hilali, Ajeet Rohatgi, Chandra Khadilkar, et al. Understanding and development of Ag paste for silicon solar cells with highsheet - resistance emitters[ A ]. 19th European Photovohaic Solar Energy Conference,2004,7 - 11.

共引文献73

同被引文献117

引证文献17

二级引证文献75

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部