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背面结构对铝背发射极n型单晶硅太阳电池的影响研究 被引量:5

THE INFLUENCE OF THE REAR STRUCTURE FOR Al-ALLOYED REAR EMITTER N-TYPE MONO-CRYSTALLINE SOLAR CELL
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摘要 研究背面结构对铝背发射极n型单晶硅太阳电池的影响,提出背面抛光结构铝背发射极n型单晶硅太阳电池的制备方法。使用少子寿命测试仪、扫描电镜(SEM)、量子效率测试仪及太阳电池测试仪对电池的表面复合速率、微观结构、量子效率和电性能进行测定。结果表明:对铝背发射极n型单晶硅太阳电池,背面抛光结构优于背面金字塔绒面结构,背面抛光结构可降低电池背面的复合速率、改善p-n结质量、提高量子效率,使电池转换效率提高0.34%。 This study investigated the influence solar cell, and proposed polished rear structure of the rear structure for Al-alloyed rear emitter n-type mono-crystalline as a new manufacturing technology for Al-alloyed rear emitter n-type mono-crystalline solar cell. Surface recombination velocities, microstructure, quantum efficiency and electric properties of the cells were characterized using lifetime monitor, scanning electron microscopy (SEM), quantum efficiency tester and solar cell measuring instrument, respectively. The results showed that the polished rear structure was better than the texture for Al-alloyed rear emitter n-type mono-erystalline solar cell. The polished structure reduced rear surface recombination velocity, improved the quality of p-n junction and the external quantum efficiency, resulting in an increase of the conversion efficiency by 0.34%.
出处 《太阳能学报》 EI CAS CSCD 北大核心 2016年第5期1148-1152,共5页 Acta Energiae Solaris Sinica
关键词 太阳电池 n型单晶硅 铝背发射极 抛光 solar cell n-type mono-erystalline silicon Al-alloyed rear emitter polished
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  • 1王涓,孙岳明,黄庆安,周再发.单晶硅各向异性湿法腐蚀机理的研究进展[J].化工时刊,2004,18(6):1-4. 被引量:16
  • 2万振华,崔容强,徐林,陈凤翔.半导体材料少子寿命测试仪的研制开发[J].中国测试技术,2005,31(2):118-120. 被引量:4
  • 3Boas R, Farber M, Flynn H, et al. Looking back-sizing the 2008 solar market[J]. Photon Int, 2009,3 : 88.
  • 4Verlinden P J, Sinton R A, et al. Backside-contact silicon solar cells with improved efficiency for the '96world solar challenge[C]// 14th EC PVSEC. Barcelona. Spain, 1997.
  • 5SANYO develops HIT solar cells with World's highest energy conversion efficiency of 23.0%[EB/OL]. http://sanyo. com/news/2009/05/22-1, html.
  • 6Smith K D, Gummel H K, Bode J D, et al. The solar cells and their mounting[J]. Bell Syst Techn J,1963(3):1765.
  • 7Fischer H, et al. Investigation of photon and thermal induced changes in silicon solar cells[C]// 10th IEEE Photovoltaic Specialists Conference. Palo Alto, CA, USA,1973.
  • 8Schmidt J, Aberle A G, Hezel R. Investigation of carrier lifetime instabilities in C2-grown silicon [C]// 26th IEEE PVSC. New York, USA, 1997:13.
  • 9Zhao J, Wang A. High efficiency rear emitter PERT cells on Cz and Fz n-type silicon substrates [C]// 4th IEEE WCPEC. Waikoloa, Hawaii, USA, 2006.
  • 10Guo J, Tjahjono B S, Cotter J E. 19.2 efficiency n-type laser-grooved silicon solar cells[C]// 31st IEEE PVSC. Orlando, USA, 2005 : 983.

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