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Effects of Photo‐oxidation on the Performance of Poly[2‐methoxy‐5‐(3′,7′‐dimethyloctyloxy)‐1,4‐phenylene vinylene]:[6,6]‐Phenyl C61‐Butyric Acid Methyl Ester Solar Cells
Authors:R Pacios  A&#x;J Chatten  K Kawano  J&#x;R Durrant  D&#x;D&#x;C Bradley  J Nelson
Affiliation:R. Pacios,A.?J. Chatten,K. Kawano,J.?R. Durrant,D.?D.?C. Bradley,J. Nelson
Abstract:A study of the photo‐oxidation of films of poly2‐methoxy‐5‐(3′,7′‐dimethyloctyloxy)‐1,4‐phenylene vinylene] (MDMO‐PPV) blended with 6,6]‐phenyl C61‐butyric acid methyl ester (PCBM), and solar cells based thereon, is presented. Solar‐cell performance is degraded primarily through loss in short‐circuit current density, JSC. The effect of the same photodegradation treatment on the optical‐absorption, charge‐recombination, and charge‐transport properties of the active layer is studied. It is concluded that the loss in JSC is primarily due to a reduction in charge‐carrier mobility, owing to the creation of more deep traps in the polymer during photo‐oxidation. Recombination is slowed down by the degradation and cannot therefore explain the loss in photocurrent. Optical absorption is reduced by photo‐bleaching, but the size of this effect alone is insufficient to explain the loss in device photocurrent.
Keywords:Charge transport  Conjugated polymers  Poly(phenylene vinylene)s  Solar cells  organic
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