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Influence of fullerene photodimerization on the PCBM crystallization in polymer: Fullerene bulk heterojunctions under thermal stress
Authors:Fortunato Piersimoni  Giedrius Degutis  Sabine Bertho  Koen Vandewal  Donato Spoltore  Tim Vangerven  Jeroen Drijkoningen  Marlies K. Van Bael  An Hardy  Jan D'Haen  Wouter Maes  Dirk Vanderzande  Milos Nesladek  Jean Manca
Affiliation:1. Hasselt University, Institute for Materials Research‐IMEC, Ass. Lab. IMOMEC, Wetenschapspark 1, , B‐3590 Diepenbeek, Belgium;2. Department of Materials Science and Engineering, Stanford University, , Stanford, California, 94305
Abstract:For an increased lifetime of polymer:fullerene bulk heterojunction (BHJ) solar cells, an understanding of the chemical and morphological degradation phenomena taking place under operational conditions is crucial. Phase separation between polymer and fullerene induced by thermal stress has been pointed out as a major issue to overcome. While often the effect of thermal stress on the morphology of polymer:fullerene BHJ is investigated in the darkness, here we observe that light exposure slows down fullerene crystallization and phase separation induced at elevated temperatures. The observed photo‐stabilizing effect on active layer morphology is quite independent on the polymer and is attributed to light‐induced dimerization of the fullerene. © 2013 Wiley Periodicals, Inc. J. Polym. Sci., Part B: Polym. Phys. 2013 , 51, 1209–1214
Keywords:crystallization  degradation  dimerization  fullerenes  morphology stabilization  organic solar cells
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