Analysis of the Diffused Front Surface Field of n-type Silicon Solar Cells with a-Si/c-Si Heterojunction Rear Emitter

Author:

Bivour Martin,Rüdiger Marc,Reichel Christian,Ritzau Kurt-U.,Hermle Martin,Glunz Stefan W.

Publisher

Elsevier BV

Reference26 articles.

1. Taguchi M, Tsunomura Y, Inoue H, Taira S, Nakashima T, Baba T, et al. High-Efficiency HIT Solar Cell on Thin (<100μm) Silicon Wafer, Proc. 24th EU PVSEC, Hamburg, Germany, p. 1690-3 (2009).

2. Olibet S, Monachon C, Hessler-Wyser A, Vallat-Sauvain E, De Wolf S, Fesquet L, et al. Textured Silicon Heterojunction Solar Cells with over 700mV Open-Circuit Voltage Studied by Transmission Electron Microscopy, Proc. 23rd EU PVSEC, Valencia, Spain, p. 1140-4 (2008).

3. Effects of a-Si:H layer thicknesses on the performance of a-Si:H/c-Si heterojunction solar cells;Fujiwara;J. Appl. Phys.,2007

4. Choong G, Bôle B, Barraud L, Zicarelli F, Descoeudres A, De Wolf S, et al. Transparent Concuctive Oxides for Silicon Heterojunction Solar Cells, Proc. 25th EU PVSEC, Valencia, Spain, p. 2505-10 (2010).

5. Koida T, Fujiwara H, Kondo M. High-mobility hydrogen-doped In2O3 transparent conductive oxide for a-Si:H/c-Si heterojunction solar cells”, Solar Energy Materials & Solar Cells 93, Issues 6-7, p. 851-4 (2009).

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