A glass frit-sealed dye solar cell module with integrated series connections
暂无分享,去创建一个
Rainer Kern | P. Lechner | U. Belledin | A. Hinsch | P. Lechner | A. Hinsch | R. Sastrawan | R. Kern | C. Vetter | F. Petrat | U. Belledin | A. Prodi-Schwab | W. Hoffmann | R. Sastrawan | J. Beier | Carmen Vetter | W. Hoffmann | S. Hemming | F. M. Petrat | A. Prodi-Schwab | J. Beier | S. Hemming
[1] Hiroshi Matsui,et al. 100 mm × 100 mm large-sized dye sensitized solar cells , 2004 .
[2] K. Hanke. Upscaling of the Dye Sensitized Solar Cell* , 1999 .
[3] Yang Huang,et al. Design of DSC panel with efficiency more than 6 , 2005 .
[4] P. M. Sommeling,et al. Reproducible manufacturing of dye‐sensitized solar cells on a semi‐automated baseline , 2003 .
[5] Andreas F. Meyer,et al. Long‐term stability of dye‐sensitised solar cells , 2001 .
[6] Yasuhiko Takeda,et al. Outdoor performance of large scale DSC modules , 2004 .
[7] M. Grätzel,et al. A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films , 1991, Nature.
[8] Marc Burgelman,et al. Calculation of CIS and CdTe module efficiencies. , 1998 .
[9] Peng Wang,et al. Stable ⩾8% efficient nanocrystalline dye-sensitized solar cell based on an electrolyte of low volatility , 2005 .
[10] G. Tulloch,et al. Light and energy—dye solar cells for the 21st century , 2004 .
[11] Peng Wang,et al. A stable quasi-solid-state dye-sensitized solar cell with an amphiphilic ruthenium sensitizer and polymer gel electrolyte , 2003, Nature materials.