Bakker, K., Ahman, H. N., Burgers, T., Barreau, N., Weeber, A. & Theelen, M. (2020) Propagation mechanism of reverse bias induced defects in Cu(In,Ga)Se-2 solar cells. Sol. Energy Mater. Sol. Cells, 205 110249. |
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Barreau, N., Laehnemann, J., Couzinie-Devy, F., Assmann, L., Bertoncini, P. & Kessler, J. (2009) Impact of Cu-rich growth on the CuIn1-xGaxSe2 surface morphology and related solar cells behaviour. Sol. Energy Mater. Sol. Cells, 93 2013–2019. |
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Barreau, N., Deudon, C., Lafond, A., Gall, S. & Kessler, J. (2006) A study of bulk NaxCu1-xIn5S8 and its impact on the Cu(In,Ga)Se-2/ln(2)S(3) interface of solar cells. Sol. Energy Mater. Sol. Cells, 90 1840–1848. |
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Bernede, J. C., Cattin, L., Makha, M., Jeux, V., Leriche, P., Roncali, J., Froger, V., Morsli, M. & Addou, M. (2013) MoO3/CuI hybrid buffer layer for the optimization of organic solar cells based on a donor-acceptor triphenylamine. Sol. Energy Mater. Sol. Cells, 110 107–114. |
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Cattin, L., Lare, Y., Makha, M., Fleury, M., Chandezon, F., Abachi, T., Morsli, M., Napo, K., Addou, M. & Bernede, J. C. (2013) Effect of the Ag deposition rate on the properties of conductive transparent MoO3/Ag/MoO3 multilayers. Sol. Energy Mater. Sol. Cells, 117 103–109. |
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El Jouad, Z., Morsli, M., Louarn, G., Cattin, L., Addou, M. & Bernede, J. C. (2015) Improving the efficiency of subphthalocyanine based planar organic solar cells through the use of MoO3/CuI double anode buffer layer. Sol. Energy Mater. Sol. Cells, 141 429–435. |
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Godoy, A., Cattin, L., Toumi, L., Diaz, F. R., del Valle, M. A., Soto, G. M., Kouskoussa, B., Morsli, M., Benchouk, K., Khelil, A. & Bernede, J. C. (2010) Effects of the buffer layer inserted between the transparent conductive oxide anode and the organic electron donor. Sol. Energy Mater. Sol. Cells, 94 648–654. |
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Karpinski, A., Berson, S., Terrisse, H., Mancini-Le Granvalet, M., Guillerez, S., Brohan, L. & Richard-Plouet, M. (2013) Anatase colloidal solutions suitable for inkjet printing: Enhancing lifetime of hybrid organic solar cells. Sol. Energy Mater. Sol. Cells, 116 27–33. |
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Marron, F. D., Canovas, E., Levy, M. Y., Marti, A., Luque, A., Afshar, M., Albert, J., Lehmann, S., Abou-Ras, D., Sadewasser, S. & Barreau, N. (2010) Optoelectronic evaluation of the nanostructuring approach to chalcopyrite-based intermediate band materials. Sol. Energy Mater. Sol. Cells, 94 1912–1918. |
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Added by: Laurent Cournède 2016-03-10 21:37:31 |
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Roux, F., Amtablian, S., Anton, M., Besnard, G., Bilhaut, L., Bommersbach, P., Braillon, J., Cayron, C., Disdier, A., Fournier, H., Garnier, J., Jannaud, A., Jouhannaud, J., Kaminski, A., Karst, N., Noel, S., Perraud, S., Poncelet, O., Raccurt, O., Rapisarda, D., Ricaud, A., Rouchon, D., Roumanie, M., Rouviere, E., Sicardy, O., Sonier, F., Tarasov, K., Tardif, F., Tomassini, M. & Villanova, J. (2013) Chalcopyrite thin-film solar cells by industry-compatible ink-based process. Sol. Energy Mater. Sol. Cells, 115 86–92. |
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Added by: Laurent Cournède 2016-03-10 21:23:30 |
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Theelen, M., Foster, C., Steijvers, H., Barreau, N., Vroon, Z. & Zeman, M. (2015) The impact of atmospheric species on the degradation of CIGS solar cells. Sol. Energy Mater. Sol. Cells, 141 49–56. |
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Added by: Laurent Cournède 2016-03-10 18:36:41 |
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Theelen, M., Hendrikx, R., Barreau, N., Steijvers, H. & Bottger, A. (2016) The effect of damp heat-illumination exposure on CIGS solar cells: A combined XRD and electrical characterization study. Sol. Energy Mater. Sol. Cells, 157 943–952. |
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