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CIGS薄膜太阳能电池吸收层的非真空制备工艺研究进展 被引量:1

Research Progress in Non-vacuum Processing for Absorber Layer of CIGS Thin Film Solar Cell
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摘要 综述了CIGS薄膜非真空制备工艺的研究现状,主要包括电化学沉积法、纳米颗粒沉积法、化学反应法和其他方法,指出了其主要问题和发展方向。非真空制备工艺制备CIGS薄膜一般包括两个步骤:第一,利用各种非真空工艺制备出预制层薄膜;第二,对预制层进行退火处理结晶成CIGS薄膜。相对于真空制备工艺,非真空制备工艺制备CIGS薄膜可大大降低CIGS薄膜太阳能电池的生产成本,越来越多地受到研究者和厂商的关注。 The non-vacuum technologies for preparation of CIGS film are summarized, including electrocleposltion, nano particle paste, chemical reaction and other technologies. The primary problems and the development direction are eventually prospected. The non-vacuum technologies generally consisted of two steps. Firstly, the precursor layers were synthesized by various non-vacuum technologies. Secondly, the precursor layers were subjected to annea ling treatment, resulting in formation of CIGS films. Comparing with vacuum technology, non-vacuum technology could remarkably lower the production costs, which had attracted more and more attention from researchers and manufacturers.
出处 《材料导报》 EI CAS CSCD 北大核心 2012年第9期134-137,147,共5页 Materials Reports
基金 国家自然科学基金(51101101) 上海市教委"晨光计划"(09CG51) 上海市教委重点学科项目(J50503)
关键词 CIGS 太阳能电池 吸收层 非真空工艺 CIGS, solar cells, absorber layer, non-vacuum technology
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  • 1Neelkanth G Dhere. Toward GW/year of CIGS production within the next decade[J]. Sol Energy Mater Sol CeUs, 2007,91(15-16): 1376.
  • 2Repins I, Contreras M A, Egaas B, et al. 19. 9% efficient ZnO/CdS/CuInGaSe2solar cell with 81.2G fill factor [J].Prog Photovolt: Res Appl, 2008,16(3) : 235.
  • 3Viswanathan S Saji, Choi Ik Ho, Lee Chi-Woo. Progress in electrodeposited absorber layer for CuIn(1-x)GaxSe2 (CIGS) solar ceils [J]. Solar Energy, 2011,85 (11) : 2666.
  • 4Kaelin M, Rudmann D,Tiwari A N. Low cost processing of CIGS thin film solar cells [J]. Solar Energy, 2004,77 (6): 749.
  • 5Lee Eunjoo, Jin Woo Cho, Kim Jaehoon, et al. Synthesis of CIGS powders: Transition from binary to quaternary crys- talline structure [J]. J Alloys Compd, 2010,506 (2) : 969.
  • 6Lai Yanqing,Liu Fangyang, Zhang Zhian, et al. Cyclic vol- tammetry study of electrodeposition of Cu (In, Ga) Se2 thin films [J]. Electrochim Acta, 2009,54 (11) : 3004.
  • 7Souilah M, Lafond A, Guillot-Deudon C, et al. Structural investigation of the Cu2 Se-In2 Se3-Ga2 Sea phase diagram, X- ray photoemission and optical properties of the Cu1-x(In0.5- Ga0. 5 )1+z/3 Se2 compounds [J]. J Solid State Chem, 2010,183 (10) :2274.
  • 8Guillemoles J F, Lusson Alain, Cowache Pierre, et al. Re- crystallization of electrodeposited copper indium diselenide thin films in an atmosphere of elemental selenium [J]. Adv Mater, 1994,6(5) : 376.
  • 9Bhattacharya R N, Hiltner J F, Batchelor W, et al. 15.4% CuIn1-xGaxSe2-based photovohaic cells from solution-based precursor films [J]. Thin Solid Films,2000,361-362 : 396.
  • 10Lincot D, Guillemoles J F, Taunier S, et al. Chalcopyrite thin film solar cells by electrodeposition [J]. Solar Energy, 2004,77(6) : 725.

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