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62
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Krebs F.C. Air stable polymer photovoltaics based on a process free from vacuum steps and fullerenes. Sol. Energy Mater. Sol. Cells 92 (2008) 715-726
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Flexible organic P3HT:PCBM bulk-heterojunction modules with more than 1 year outdoor lifetime
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66
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Lifetimes of organic photovoltaics: photochemistry, atmosphere effects, and barrier layers in ITO-MEHPPV-PCBM-aluminium devices
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Krebs F.C., Carlé J.E., Cruys-Bagger N., Andersen M., Lilliedal M.R., Hammond M.A., and Hvidt S. Lifetimes of organic photovoltaics: photochemistry, atmosphere effects, and barrier layers in ITO-MEHPPV-PCBM-aluminium devices. Sol. Energy Mater. Sol. Cells 86 (2005) 499-516
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67
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68
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2 isotopic labeling to characterise chemical degradation mechanisms. Sol. Energy Mater. Sol. Cells 90 (2006) 213-227
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69
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Lifetimes of organic photovoltaics: design and synthesis of single oligomer molecules in order to study chemical degradation mechanisms
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Alstrup J., Norrman K., Jørgensen M., and Krebs F.C. Lifetimes of organic photovoltaics: design and synthesis of single oligomer molecules in order to study chemical degradation mechanisms. Sol. Energy Mater. Sol. Cells 90 (2006) 2777-2792
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Norrman K., Larsen N.B., and Krebs F.C. Lifetimes of organic photovoltaics: combining chemical and physical characterisation techniques to study degradation mechanisms. Sol. Energy Mater. Sol. Cells 90 (2006) 2793-2814
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Sol. Energy Mater. Sol. Cells
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Lifetimes of organic photovoltaics: photooxidative degradation of a model compound
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Norrman K., Alstrup J., Jørgensen M., and Krebs F.C. Lifetimes of organic photovoltaics: photooxidative degradation of a model compound. Surf. Interface Anal. 38 (2006) 1302-1310
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Surf. Interface Anal.
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72
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Oxygen release and exchange in niobium oxide MEHPPV hybrid solar cells
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Lira-Cant M., Norrman U.K., Andreasen J.W., and Krebs F.C. Oxygen release and exchange in niobium oxide MEHPPV hybrid solar cells. Chem. Mater. 18 (2006) 5684-5690
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Chem. Mater.
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73
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Detrimental effect of inert atmospheres on hybrid solar cells based in semiconductor oxides
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Lira-Cantu M., Norrman K., Andreasen J.W., Casan-Pastor N., and Krebs F.C. Detrimental effect of inert atmospheres on hybrid solar cells based in semiconductor oxides. J. Electrochem. Soc. 154 (2007) B508-B513
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J. Electrochem. Soc.
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74
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An explanation for the high stability of polycarboxythiophenes in photovoltaic devices-a solid-state NMR dipolar recoupling study
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83
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NMR Study of the nanomorphology in thin films of polymer blends used in organic PV devices: MDMO-PPV/PCBM
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Mens R., Adriaensens P., Lutsen L., Swinnen A., Bertho S., Ruttens B., D'Haen J., Manca J., Cleij T., Vanderzande D., and Gelan J. NMR Study of the nanomorphology in thin films of polymer blends used in organic PV devices: MDMO-PPV/PCBM. J. Pol. Sci. A Pol. Chem. 46 (2008) 138-145
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Thermo-cleavable solvents for printing conjugated polymers: application in polymer solar cells
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T. Aernouts, F.C. Krebs, P. Vanlaeke, Method for the production of a layer of organic material, filing date 29.11.2007, WO2007134616 A1.
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T. Aernouts, F.C. Krebs, P. Vanlaeke, Method for the production of a layer of organic material, filing date 29.11.2007, WO2007134616 A1.
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92
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T. Aernouts, F.C. Krebs, P. Vanlaeke, Method for the production of a layer of organic material, filing date 29.11.2007, WO2007134823 A1.
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93
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F.C. Krebs, M. Jørgensen, Decomposable vehicles in printing or coating compositions, filing date 13.04.2007, WO2007118850 A1.
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F.C. Krebs, M. Jørgensen, Decomposable vehicles in printing or coating compositions, filing date 13.04.2007, WO2007118850 A1.
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94
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96
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F.C. Krebs, Pad printing as a film forming technique for polymer solar cells, Sol. Energy Mater. Solar Cells 93 (2009) 484-490, doi:10.1016/j.solmat.2008.09.003.
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97
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Progress in thick-film pad printing technique for solar cells
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Hahne P., Hirth E., Reis I.E., Schwichtenberg K., Richtering W., Horn F.M., and Eggenweiler U. Progress in thick-film pad printing technique for solar cells. Sol. Energy Mater. Sol. Cells 65 (2001) 399-407
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98
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60449095516
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An example of a commercially available roll coating platform for R2R applications
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An example of a commercially available roll coating platform for R2R applications 〈www.solarcoating.de〉.
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100
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Gravure offset printing of polymer inks for conductors
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Pudas M., Hagberg J., and Leppävuori S. Gravure offset printing of polymer inks for conductors. Prog. Org. Coat. 49 (2004) 324-335
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An experimental investigation of meniscus roll coating
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(a) K.X. Steirer, M.O. Reese, B. Rupert, N. Kopidakis, D.C. Olson, R.T. Collins, D.S. Ginley, Ultrasonic spray deposition for production of organic solar cells, Sol. Energy Mater. Sol. Cells 93 (2009) 447-453, doi:10.1016/j.solmat.2008.10.026; (b) C. Girotto, B.P. Rand, J. Genoe, P. Heremans, Exploring spray coating as a deposition technique for the fabrication of solution-processed solar cells, Sol. Energy Mater. Sol. Cells 93 (2009) 454-458.
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111
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® ink solutions available from Plextronics 〈www.plextronics.com〉.
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® ink solutions available from Plextronics 〈www.plextronics.com〉.
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112
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60449095241
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® PEDOT:PSS available from Agfa are Orgacon-5010 〈www.agfa.com〉.
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® PEDOT:PSS available from Agfa are Orgacon-5010 〈www.agfa.com〉.
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113
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60449105861
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® PEDOT:PSS available from H.C. Starck are Clevios S V3 〈www.clevios.com〉.
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® PEDOT:PSS available from H.C. Starck are Clevios S V3 〈www.clevios.com〉.
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114
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60449089776
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Examples of screen printable silver pastes suitable for polymer photovoltaics from Dupont are the products 5007, PV410 and PV411
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Examples of screen printable silver pastes suitable for polymer photovoltaics from Dupont are the products 5007, PV410 and PV411 〈www.dupont.com〉.
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