Dresden 2020 – wissenschaftliches Programm

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CPP: Fachverband Chemische Physik und Polymerphysik

CPP 86: Organic Electronics and Photovoltaics III

Donnerstag, 19. März 2020, 09:30–12:45, ZEU 260

09:30 CPP 86.1 Fast Processing of Charge Transport Layers in Organic Solar Cells — •Harald Hoppe, Shahidul Alam, Aman Anand, Aurelien Sokeng Djourmessi, Jose Prince Madalaimuthu, Peter Fischer, and Ulrich S. Schubert
09:45 CPP 86.2 Single step production of a self-organized, low work function cathode interlayer from polymer blend solution — •Dominique Lungwitz, Keli Fabiana Seidel, Andreas Opitz, Thomas Krüger, Jan Behrends, Seth R. Marder, and Norbert Koch
10:00 CPP 86.3 Studying the dynamics of PTB7:PCBM blend films — •Dominik Schwaiger, Wiebke Lohstroh, and Peter Müller-Buschbaum
10:15 CPP 86.4 Temperature dependence of the spectral linewidth of charge-transfer-state emission in organic solar cells; static vs. dynamic disorder contribution — •Kristofer Tvingstedt, Johannes Benduhn, and Koen Vandewal
10:30 CPP 86.5 Organic narrowband near-infrared photodetectors for industrial applications — •Johannes Benduhn, Rico Meerheim, David Wynands, Marcel Dahms, Paul Vincze, and Robert Brückner
10:45 CPP 86.6 Integrated All-Organic Oxygen Sensor — •Toni Bärschneider, Jakob Lindenthal, Simone Lenk, and Sebastian Reineke
11:00 CPP 86.7 High-Speed and High-Current Vertical Organic Transistors — •Felix Dollinger, Kyung-Geun Lim, Axel Fischer, Petr Formánek, Hans Kleemann, and Karl Leo
  11:15 15 min. break
11:30 CPP 86.8 In Situ and In Operando KPFM Studies on Hexadecafluoro-Copper-Phthalocyanine (F16PcCu) in OFET to Access Electrical Contact Resistance and Energy Level Alignment — •Pascal Schweitzer, Clemens Geis, and Derck Schlettwein
11:45 CPP 86.9 Impact of electron-phonon-interaction on transport in organic molecular crystals: Naphthalene as a case study — •Konrad Merkel, Michel Panhans, Sebastian Hutsch, and Frank Ortmann
12:00 CPP 86.10 Multifrequency Spin-Resonance Experiments on Organic LEDs based on Inter- and Intra-molecular Triplet-Singlet Conversion — •Sebastian Weissenseel, Rebecca Bönnighausen, Jeannine Grüne, Nikolai Bunzmann, Vladimir Dyakonov, and Andreas Sperlich
12:15 CPP 86.11 What is the effective electrical bandgap of an OLED? — •Axel Fischer, Jinhan Wu, and Sebastian Reineke
12:30 CPP 86.12 Increasing the triplet-to-singlet ratio in photoluminescence of TADF emitters using phosphorescent sensitizers: a pathway to study non-linear effects — •Paulius Imbrasas, Simone Lenk, and Sebastian Reineke
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