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Double-layer indium doped zinc oxide for silicon thin-film solar cell prepared by ultrasonic spray pyrolysis

Double-layer indium doped zinc oxide for silicon thin-film solar cell prepared by ultrasonic spray pyrolysis
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摘要 Indium doped zinc oxide (ZnO:In) thin films were prepared by ultrasonic spray pyrolysis on corning eagle 2000 glass substrate. 1 and 2 at.% indium doped single-layer ZnO:In thin films with different amounts of acetic acid added in the initial solution were fabricated. The 1 at.% indium doped single-layers have triangle grains. The 2 at.% indium doped single-layer with 0.18 acetic acid adding has the resistivity of 6.82 × 10^-3 Ω. cm and particle grains. The doublelayers structure is designed to fabricate the ZnO:In thin film with low resistivity (2.58 × 10^-3 Ω. cm) and good surface morphology. It is found that the surface morphology of the double-layer ZnO:In film strongly depends on the substratelayer, and the second-layer plays a large part in the resistivity of the doublewlayer ZnO:In thin film. Both total and direct transmittances of the double-layer ZnO:In film are above 80% in the visible light region. Single junction a-Si:H solar cell based on the double-layer ZnO:In as front electrode is also investigated. Indium doped zinc oxide (ZnO:In) thin films were prepared by ultrasonic spray pyrolysis on corning eagle 2000 glass substrate. 1 and 2 at.% indium doped single-layer ZnO:In thin films with different amounts of acetic acid added in the initial solution were fabricated. The 1 at.% indium doped single-layers have triangle grains. The 2 at.% indium doped single-layer with 0.18 acetic acid adding has the resistivity of 6.82 × 10^-3 Ω. cm and particle grains. The doublelayers structure is designed to fabricate the ZnO:In thin film with low resistivity (2.58 × 10^-3 Ω. cm) and good surface morphology. It is found that the surface morphology of the double-layer ZnO:In film strongly depends on the substratelayer, and the second-layer plays a large part in the resistivity of the doublewlayer ZnO:In thin film. Both total and direct transmittances of the double-layer ZnO:In film are above 80% in the visible light region. Single junction a-Si:H solar cell based on the double-layer ZnO:In as front electrode is also investigated.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第3期407-415,共9页 中国物理B(英文版)
基金 supported by Hi-Tech Research and Development Program of China (Grant Nos. 2007AA05Z436 and 2009AA050602) Science and Technology Support Project of Tianjin (Grant No. 08ZCKFGX03500) the National Basic Research Program of China (Grant Nos. 2011CB201605 and 2011CB201606) the National Natural Science Foundation of China (Grant No. 60976051) International Cooperation Project between China-Greece Government (Grant No. 2009DFA62580) Program for New Century Excellent Talents in University of China (Grant No. NCET-08-0295)
关键词 indium doped zinc oxide thin film ultrasonic spray pyrolysis double-layer structure solar cell indium doped zinc oxide thin film, ultrasonic spray pyrolysis, double-layer structure, solar cell
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  • 1Look D C 2001 Mater. Sci. Eng. B 80 383.
  • 2Han X Y, Hou G F, Wei C C, Zhang X D, Dai Z H, Li G J, Sun J, Chen X L, Zhang D K, Xue J M, Zhao Y and Gen X H 2009 Acta Phys. Sin. 58 4254 (in Chinese).
  • 3Zhang X D, Zhao Y, Sun F H, Wang S F, Han X Y, Wei C C, Sun J, Geng X H and Xiong S Z 2009 Acta Phys. Sin. 58 5041 (in Chinese).
  • 4Zhang X D, Zhao Y, Gao Y T, Chen F, Zhu F, Wei C C, Sun J, Geng X H and Xiong S Z 2006 Acta Phys. Sin. 55 6697 (in Chinese).
  • 5Fay S, Steinhauser J, Nicolay S and Ballif C 2010 Thin Solid Films 518 2961.
  • 6Fay S, Feitknecht L, Schluchter R, Kroll U, Vallat-Sauvain E and Shah A 2006 Sol. Energy Mater. Sol. Cells 90 2960.
  • 7Chen X L, Geng X H, Xue J M, Zhang D K, Hou G F and Zhao Y 2006 J. Cryst. Growth 296 43.
  • 8Chen X L, Xu B H, Xue J M, Zhao Y, Wei C C, Sun J, Wang Y, Zhang X D and Geng X H 2007 Thin Solid Films 515 3753.
  • 9Anna Selvana J A, Delahoy A E, Guo S and Li Y M 2006 Sol. Energy Mater. Sol. Cells 90 3371.
  • 10Duenow J N, Gessert T A, Wood D M, Young D L and Coutts T J 2008 J. Non-Cryst Solids 354 2787.

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