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Merocyanine/C60 Planar Heterojunction Solar Cells: Effect of Dye Orientation on Exciton Dissociation and Solar Cell Performance
Authors:Antti Ojala  Andreas Petersen  Andreas Fuchs  Robert Lovrincic  Carl Pölking  Jens Trollmann  Jaehyung Hwang  Christian Lennartz  Helmut Reichelt  Hans Wolfgang Höffken  Annemarie Pucci  Peter Erk  Thomas Kirchartz  Frank Würthner
Affiliation:1. Institut für Organische Chemie and R?ntgen Research Center for Complex Material Systems, Universit?t Würzburg, Am Hubland, 97074 Würzburg, Germany;2. BASF SE, Carl‐Bosch‐Stra?e 38, 67056 Ludwigshafen, Germany;3. Robert Bosch GmbH, Robert‐Bosch‐Platz 1, 70839 Gerlingen‐Schillerh?he, Germany;4. Kirchhoff‐Institut für Physik der Universit?t Heidelberg, Im Neuenheimer Feld 227, 69120 Heidelberg, Germany;5. Blackett Laboratory of Physics, Imperial College, South Kensington, London SW7 2AZ, UK
Abstract:In this study the charge dissociation at the donor/acceptor heterointerface of thermally evaporated planar heterojunction merocyanine/C60 organic solar cells is investigated. Deposition of the donor material on a heated substrate as well as post‐annealing of the complete devices at temperatures above the glass transition temperature of the donor material results in a twofold increase of the fill factor. An analytical model employing an electric‐field‐dependent exciton dissociation mechanism reveals that geminate recombination is limiting the performance of as‐deposited cells. Fourier‐transform infrared ellipsometry shows that, at temperatures above the glass transition temperature of the donor material, the orientation of the dye molecules in the donor films undergoes changes upon annealing. Based on this finding, the influence of the dye molecules’ orientations on the charge‐transfer state energies is calculated by quantum mechanical/molecular mechanics methods. The results of these detailed studies provide new insight into the exciton dissociation process in organic photovoltaic devices, and thus valuable guidelines for designing new donor materials.
Keywords:organic photovoltaics  merocyanine dyes  exciton dissociation  heterojunction solar cells
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