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高效率、低成本是晶体硅太阳电池发展的主流方向.背接触电池以其独特的器件结构、简单的制备工艺及较高的电池效率,备受光伏市场的关注.概括了目前国际上研究较多的几种背接触硅太阳电池,对其结构特点、制造技术及发展概况作了系统介绍,并在此基础上提出了需要改进的问题及未来的发展方向.

参考文献

[1] Knauss H.The advantage project:development of new interconnection and encapsulation techniques for backcontact solar cells[A].France:Paris,2004:2139.
[2] Van Kerschaver E;Beaucarne G .Back-contact solar cells:A Review[J].Progress in Photovoltaics:Research and Applications,2006,14:107.
[3] Schwartz R J;Lammert M D.Silicon solar ceils for high concentration applications[A].Washington,DC,1975:350.
[4] Lammert M D;Schwartz R J .The interdigitated back contact solar cell:A silicon solar cell for use in concentrated sunlight[J].IEEE Transactions on Electron Devices,1977,24(04):337.
[5] Mulligan W P.Manufacture of solar cells with 21% efficiency[A].France:Paris,2004:387.
[6] McIntosh R K;Shaw C N;Cotter E J.Light trapping in sunpower's A-300.solar cells[A].France:Paris,2004:844.
[7] Hezel R .Progress in manufacturable high-efficiency silicon solar cells[J].Advances in Solid State Physics,2004,44:39.
[8] Glunz SW .New concepts for high-efficiency silicon solar cells[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,2006(18/19):3276-3284.
[9] Engelhart P;Harder N P;Merkle A.RISE:21.5% efficient back junction silicon solar cell with laser technology as a key processing tool[A].Hilton Waikoloa,2006:900.
[10] Huljic D M;Zerres T;Mohr A.Development of a 21% back-contact monocrystalline silicon solar cell for large scale production[A].Dresden,Germany,2006:765.
[11] Jooss W.Back contact buried contact solar ceils with metallization wrap around electrodes[A].Anchorage,2000:176.
[12] Van E Kerschaver;Wolf S D;Slufcik J.Towards back contact silicon solar cells with screen printed metallization[A].Anchorage,2000:209.
[13] van Kerschaver E;Wolf S D;Szlufcik J.Screen printed metallisation wrap through solar cells[A].Glasgow,2000:1517.
[14] Schonecker A.ACE designs:the beauty of rear contact solar cells[A].New Orleans,2002:107.
[15] Knauss H;McCann M;Fath P.Large area metallization wrap through solar cells using electroless plating[A].,2005:1201.
[16] Gee J M;Schubert W K;Basore P A.Emitter wrap-throughsolar cell[A].Louisville,1993:265.
[17] Kress A.10×10 cm2 screen printed back contact cell with aselective emitter[A].Anchorage,Alaska,USA,2000:213.
[18] Hacke P;Gee J M;Hilali M.Current status of technologies for industrial emitter-wrap-throngh solar cells[A].Dresden,Germany,2006:761.
[19] Gee J M;Hacke P;Sumner M.Towards a manufacturable back-contact emitter-wrap-through silicon solar cell[A].,2005:1663.
[20] Willeke G;Fath P.The POWER silicon solar cell concept[M].Amsterdam,1994:766.
[21] Neu W;Keller S;Terheiden B.Process development for back contact POWER silicon solar cells with emitter wrap through design[A].Osaka,Japan,2003:1423.
[22] Engelhart P;Teppe,A;Merkle A.The RISE-EWT solar ceIl-a new approach towards simple high efficiency silicon solar cells[A].上海,2005:802.
[23] Deguchi M.Prospect of the high efficiency for the VEST cell[A].Waikoloa,Hawaii,USA,1994:1287.
[24] Rolf BrendeL.Crystalline thin-film silicon solar cells from layer-transfer processes:a review[A].Copper Mountain,USA,2000:117.
[25] Catchpole K R;McCann M J.A review of thin film silicon for solar cell applications[A].Glasgow,2000:1165.
[26] Hezel R.Novel back contact silicon solar cells designed for very high efficiencies and low-cost mass production[A].New Orleans,2002:114.
[27] Hezel R;Hoffmann W.A new generation of industrial crystalline silicon solar cells based on the OECO technology[A].Osaka,Japan,2003:1399.
[28] MOiler J W;Merkle A;Hezel R.Self-aligning,industrially feasible back contacted silicon solar cells with efficiencies>18%[A].Osaka,Japan,2003:1403.
[29] MOiler J W;Merkle A;Hezel R.The BACK-OECO solar cell:a rear contacted,bifacially sensitive industrially fasible solar cell with efficiencies of 21.5%[A].Spain:Barcelona,2005:1020.
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