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Title
A round robin study of flexible large-area roll-to-roll processed polymer solar cell modules
Article in journal
Authors
Frederik C Krebs, Suren A Gevorgyan, Bobak Gholamkhass, Steven Holdcroft, Cody Schlenker, Mark E Thompson, Barry C Thompson, Dana Olson, David S Ginley, Sean E Shaheen, Husam N Alshareef, John W Murphy, W Justin Youngblood, Nathan C Heston, John R Reynolds, Shijun Jia, Darin Laird, Sachetan M Tuladhar, Justin G A Dane, Pedro Atienzar, Jenny Nelson, Jan M Kroon, Martijn M Wienk, Rene A J Janssen, Kristofer Tvingstedt, Fengling Zhang, Mattias Andersson, Olle Inganäs, Monica Lira-Cantu, Remi de Bettignies, Stephane Guillerez, Tom Aernouts, David Cheyns, Laurence Lutsen, Birger Zimmermann, Uli Wuerfel, Michael Niggemann, Hans-Frieder Schleiermacher, Paul Liska, Michael Graetzel, Panagiotis Lianos, Eugene A Katz, Wolfgang Lohwasser, Bertrand Jannon
Publication Year
2009
Source
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2009, (93)11, 1968-1977
Link to Source (DOI)
10.1016/j.solmat.2009.07.015
Abstract
<p>A round robin for the performance of roll-to-roll coated flexible large-area polymer solar-cell modules involving 18 different laboratories in Northern America, Europe and Middle East is presented. The study involved the performance measurement of the devices at one location (Riso DTU) followed by transportation to a participating laboratory for performance measurement and return to the starting location (Riso DTU) for re-measurement of the performance. It was found possible to package polymer solar-cell modules using a flexible plastic barrier material in such a manner that degradation of the devices played a relatively small role in the experiment that has taken place over 4 months. The method of transportation followed both air-mail and surface-mail paths.</p>