Production technology for CIGS thin film solar cells

被引:35
作者
Negami, T
Satoh, T
Hashimoto, Y
Shimakawa, S
Hayashi, S
Muro, M
Inoue, H
Kitagawa, M
机构
[1] Matsushita Elect Ind Co Ltd, Living Environm Dev Ctr, Kyoto 6190237, Japan
[2] Matsushita Elect Ind Co Ltd, Prod Engn Lab, Osaka 5718502, Japan
关键词
solar cell; Cu(In; Ga)Se-2; composition monitoring; composition profile; bandgap grading;
D O I
10.1016/S0040-6090(01)01524-3
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Composition ratios such as Cu/(In+Ga) and Ga/In have a great influence not only on performances but an yields of Cu(In,Ga)Se-2 (CIGS) solar modules. We demonstrated on a composition monitoring of a Cu/(In+Ga) ratio and control of a Ga/In profile in the CIGS films using a Cu rich composition in Cu rich growth stage. A composition monitoring method based on emissivity of CIGS films is proposed and developed for the preparation of large area CIGS films. The substrate temperature cooling rate immediately after the deposition increases with increasing the Cu/(In+Ga) ratio in Cu-rich films, while Cu poor films have almost the same cooling rate. Measurement of the temperature cooling rate therefore enables the determination of whether the deposited film has Cu rich or poor composition. In and Ga depth profiles in completed CIGS films depend on the Cu/(In+Ga) ratios in Cu rich growth stage. Smooth gradient profile near the surface was formed in the CIGS film prepared from a heavily Cu rich film due to the fast diffusion rate of Ga into an excess Cu,Se layer. The bandgap profile, induced by the Ga/In depth profile, can be controlled by the Cu rich composition in Cu rich growth stage to improve performance of solar cells. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:197 / 203
页数:7
相关论文
共 14 条
[1]  
Contreras M. A., 1994, Progress in Photovoltaics: Research and Applications, V2, P287, DOI 10.1002/pip.4670020404
[2]   High efficiency graded bandgap thin-film polycrystalline Cu(In,Ga)Se-2-based solar cells [J].
Contreras, MA ;
Tuttle, J ;
Gabor, A ;
Tennant, A ;
Ramanathan, K ;
Asher, S ;
Franz, A ;
Keane, J ;
Wang, L ;
Noufi, R .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 1996, 41-2 :231-246
[3]  
Dimmler B., 1996, P 25 IEEE PHOT SPEC, P757
[4]   A new approach to high-efficiency solar cells by band gap grading in Cu(In,Ga)Se2 chalcopyrite semiconductors [J].
Dullweber, T ;
Hanna, G ;
Rau, U ;
Schock, HW .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2001, 67 (1-4) :145-150
[5]   Fabrication of graded Cu(InGa)Se2 films by inline evaporation [J].
Hanket, GM ;
Paulson, PD ;
Singh, U ;
Junkert, ST ;
Birkmire, RW ;
Doyle, FJ ;
Eser, E ;
Shafarman, WN .
CONFERENCE RECORD OF THE TWENTY-EIGHTH IEEE PHOTOVOLTAIC SPECIALISTS CONFERENCE - 2000, 2000, :499-504
[6]   Chemical bath deposition of CdS buffer layer for CIGS solar cells [J].
Hashimoto, Y ;
Kohara, N ;
Negami, T ;
Nishitani, N ;
Wada, T .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 1998, 50 (1-4) :71-77
[7]   Rapid Cu(In,Ga)Se2 growth using "end point detection" [J].
Kessler, J ;
Schöldström, J ;
Stolt, L .
CONFERENCE RECORD OF THE TWENTY-EIGHTH IEEE PHOTOVOLTAIC SPECIALISTS CONFERENCE - 2000, 2000, :509-512
[8]   PREPARATION OF DEVICE-QUALITY CU(IN,GA)SE-2 THIN-FILMS DEPOSITED BY COEVAPORATION WITH COMPOSITION MONITOR [J].
KOHARA, N ;
NEGAMI, T ;
NISHITANI, M ;
WADA, T .
JAPANESE JOURNAL OF APPLIED PHYSICS PART 2-LETTERS & EXPRESS LETTERS, 1995, 34 (9A) :L1141-L1144
[9]   Theoretical analysis of the effect of conduction band offset of window/CIS layers on performance of CIS solar cells using device simulation [J].
Minemoto, T ;
Matsui, T ;
Takakura, H ;
Hamakawa, Y ;
Negami, T ;
Hashimoto, Y ;
Uenoyama, T ;
Kitagawa, M .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2001, 67 (1-4) :83-88
[10]   Large-area CIGS absorbers prepared by physical vapor deposition [J].
Negami, T ;
Satoh, T ;
Hashimoto, Y ;
Nishiwaki, S ;
Shimakawa, S ;
Hayashi, S .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2001, 67 (1-4) :1-9