Article citationsMore>>
Gevorgyan, S.A., Medford, A., Bundgaard, E., Sapkota, S., Schleiermacher, H., Zimmermann, B., Wurfel, U., Chafiq, A., Lira-Cantu, M., Swonke, T., Wagner, M., Brabec, C.J., Haillant, O., Voroshazi, E., Aernouts, T., Steim, R., Hauch, J.A., Elschner, A., Pannone, M., Xiao, M., Langzettel, A., Laird, D., Lloyd, Rath, M.T., Maier, T., Trimmel, E., Hermenau, G., Menke, M., Leo, T., Rosch, K., Seeland, R., Hoppe, M., Nagle, H., Burke, T.J., Fell, K.B., Vak, C.J., Singh, D., Watkins, T.B., Galagan, S.E., Manor, A., Katz, E.A., Kim, T., Kim, K., Sommeling, P.M., Verhees, W.J.H., Veenstra, S.C., Riede, M., Christoforo, M.G., Currier, T., Shrotriya, V., Schwartz, G. and Krebs, F.C. (2011) An Inter-Laboratory Stability Study of Roll-to-Roll Coated Flexible Polymer Solar Modules. Solar Energy Materials and Solar Cells, 95, 1398-1416.
https://doi.org/10.1016/j.solmat.2011.01.010
has been cited by the following article:
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TITLE:
Effects of Residual Oxygen in the Degradation of the Performance of Organic Bulk Heterojunction Solar Cells: Stability, Role of the Encapsulation
AUTHORS:
Vianou Irénée Madogni, Macaire Agbomahéna, Basile Bruno Kounouhéwa, Olivier Douhéret, Roberto Lazzaroni
KEYWORDS:
Encapsulation, Alteration, Oxidation, Residual Oxygen, Moisture, Impurities
JOURNAL NAME:
Advances in Materials Physics and Chemistry,
Vol.8 No.9,
September
11,
2018
ABSTRACT:
We have shown in our first articles [1] [2] that even after encapsulation, the first rapid phase of degradation
mechanism observed has been attributed to oxidation of interfaces and an
alteration of the charges collection process. A second phase slower is induced
by the oxidation of the active film, namely a decrease in the absorption and a
degradation of the charge transport process. We revealed that another decrease in power conversion efficiency which has been induced by
a possible interfacial passivation occurred at the organic/cathode interface,
owing to the presence of residual oxygen, moisture and other impurities. This
is in reality the real cause of the first rapid phase of degradation mechanism
observed.
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