CROSS-DISCIPLINARY PHYSICS AND RELATED AREAS OF SCIENCE AND TECHNOLOGY |
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Optimization of Metal Coverage on the Emitter in n-Type Interdigitated Back Contact Solar Cells Using a PC2D Simulation |
ZHANG Wei1, CHEN Chen1, JIA Rui1*, Janssen G. J. M.2, ZHANG Dai-Sheng1, XING Zhao1, Bronsveld P. C. P.2, Weeber A. W.2, JIN Zhi1, LIU Xin-Yu1 |
1Institute of Microelectronics, Chinese Academy of Sciences, Beijing 100029 2ECN Solar Energy, P. O. X1, NL-1755 ZG, Petten, The Netherlands
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Cite this article: |
ZHANG Wei, CHEN Chen, JIA Rui et al 2013 Chin. Phys. Lett. 30 078801 |
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Abstract In interdigitated back contact (IBC) solar cells, the metal-electrode coverage on a p-type emitter is optimized by a PC2D simulation. The result shows that the variation of the metal coverage ratio (MCR) will affect both the surface passivation and the electrode-contact properties for the p-type emitter in IBC solar cells. We find that when Rc ranges from 0.08 to 0.16Ω?cm2, the MCR is optimized with a value of 25% and 33%, resulting in a highest energy-conversion efficiency. The dependences of both Voc and fill factor on MCR are simulated in order to explore the mechanism of the IBC solar cells.
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Received: 01 April 2013
Published: 21 November 2013
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