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005     20240712084506.0
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100 1 _ |a Kaienburg, Pascal
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245 _ _ |a Extracting Information about the Electronic Quality of Organic Solar-Cell Absorbers from Fill Factor and Thickness
260 _ _ |a College Park, Md. [u.a.]
|c 2016
|b American Physical Society
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520 _ _ |a Understanding the fill factor in organic solar cells remains challenging due to its complex dependence on a multitude of parameters. By means of drift-diffusion simulations, we thoroughly analyze the fill factor of such low-mobility systems and demonstrate its dependence on a collection coefficient defined in this work. We systematically discuss the effect of different recombination mechanisms, space-charge regions, and contact properties. Based on these findings, we are able to interpret the thickness dependence of the fill factor for different experimental studies from the literature. The presented model provides a facile method to extract the photoactive layer’s electronic quality which is of particular importance for the fill factor. We illustrate that over the past 15 years, the electronic quality has not been continuously improved, although organic solar-cell efficiencies increased steadily over the same period of time. Only recent reports show the synthesis of polymers for semiconducting films of high electronic quality that are able to produce new efficiency records.
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|a HITEC - Helmholtz Interdisciplinary Doctoral Training in Energy and Climate Research (HITEC) (HITEC-20170406)
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700 1 _ |a Rau, Uwe
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700 1 _ |a Kirchartz, Thomas
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773 _ _ |a 10.1103/PhysRevApplied.6.024001
|g Vol. 6, no. 2, p. 024001
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|t Physical review applied
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