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Light scattering effect of submicro-textured Ag/Al composite films prepared at lower substrate temperatures |
Tang Ping-Lin (唐平林)a, Wu Yong-Gang (吴永刚)a, Tong Guang-De (童广德)b, Xia Zi-Huan (夏子奂)a, Liu Ren-Chen (刘仁臣)a, Liang Zhao-Ming (梁钊铭)a, Zhou Jian (周建)a |
a Department of Physics, Institute of Precision Optical Engineering, Tongji University, Shanghai 200092, China; b National Electromagnetic Scattering Laboratory, Institute of No. 802, Shanghai 200090, China |
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Abstract We present a new and practical approach for preparing submicro-textured silver and aluminum (Ag/Al) double-structured layers at low substrate temperatures. By increasing the deposition temperature of the Al layers to 270℃, the surface texturing of silver and aluminum double-structured layers was performed. The highly submicro-textured silver and aluminum double-structured layers were prepared by thermal evaporation on quartz glasses and their surface microstructure, light scattering properties, and thermal stability were investigated. Results showed that the highly submicro-textured Ag/Al composite films prepared at low substrate temperatures used as back reflectors not only can enhance the light scattering and have good thermal stability, but also have good adhesion properties. In addition, their fabrication is low cost and readily carried out.
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Received: 12 October 2012
Revised: 27 February 2013
Accepted manuscript online:
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PACS:
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88.40.jj
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(Silicon solar cells)
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68.55.jm
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(Texture)
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68.49.-h
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(Surface characterization by particle-surface scattering)
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73.50.Bk
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(General theory, scattering mechanisms)
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Fund: Project supported by the National Natural Science Foundation of China (Grant No. 60977028) and the Key Project Foundation of Shanghai, China (Grant No. 09JC1413800). |
Corresponding Authors:
Wu Yong-Gang
E-mail: ygwu@tongji.edu.cn
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Cite this article:
Tang Ping-Lin (唐平林), Wu Yong-Gang (吴永刚), Tong Guang-De (童广德), Xia Zi-Huan (夏子奂), Liu Ren-Chen (刘仁臣), Liang Zhao-Ming (梁钊铭), Zhou Jian (周建) Light scattering effect of submicro-textured Ag/Al composite films prepared at lower substrate temperatures 2013 Chin. Phys. B 22 078801
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