Low-temperature synthesis of multilayer graphene/amorphous carbon hybrid films and their potential application in solar cells

Author:

Cui Tongxiang,Lv Ruitao,Huang Zheng-Hong,Zhu Hongwei,Jia Yi,Chen Shuxiao,Wang Kunlin,Wu Dehai,Kang Feiyu

Abstract

Abstract The effect of reaction temperature on the synthesis of graphitic thin film on nickel substrate was investigated in the range of 400°C to 1,000°C. Amorphous carbon (a-C) film was obtained at 400°C on nickel foils by chemical vapor deposition; hybrid films of multilayer graphene (MLG) and a-C were synthesized at a temperature of 600°C, while MLG was obtained at temperatures in excess of 800°C. Schottky-junction solar cell devices prepared using films produced at 400°C, 600°C, 800°C, and 1,000°C coupled with n-type Si demonstrate power conversion efficiencies of 0.003%, 0.256%, 0.391%, and 0.586%, respectively. A HNO3 treatment has further improved the efficiencies of the corresponding devices to 0.004%, 1.080%, 0.800%, and 0.820%, respectively. These films are promising materials for application in low-cost and simple carbon-based solar cells.

Publisher

Springer Science and Business Media LLC

Subject

Condensed Matter Physics,General Materials Science

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