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09:30 |
CPP 30.1 |
Negative differential conductance in single-molecule junctions with ferromagnetic electrodes — •Peter Hasch, Yuxiang Gong, Li Jiang, Carlos-Andres Palma, Joachim Reichert, and Johannes V. Barth
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09:45 |
CPP 30.2 |
Single-molecule junctions with oligoynes and epitaxial graphene nanoelectrodes — •Konrad Ullmann, Susanne Leitherer, Maximilian Krempe, Rik Tykwinski, Michael Thoss, and Heiko Weber
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10:00 |
CPP 30.3 |
Visualizing the role of molecular orbitals in charge transport through individual diarylethene Isomers — •Gaël Reecht, Christian Lotze, Dmytro Sysoiev, Thomas Huhn, and Katharina J. Franke
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10:15 |
CPP 30.4 |
Electronic transport properties of a tripodal molecular platform — •safa golrokh bahoosh, amin karimi, elke scheer, and fabian pauly
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10:30 |
CPP 30.5 |
Analysis of local current through molecular wires in open quantum systems — •Daijiro Nozaki, Andreas Lücke, and Wolf Gero Schmidt
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10:45 |
CPP 30.6 |
Controlling the conductance of graphene-molecule junctions by proton transfer — •Dominik Weckbecker, Pedro B. Coto, and Michael Thoss
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11:00 |
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15 min. break.
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11:15 |
CPP 30.7 |
Hierarchical Quantum Master Equation Approach to Vibrationally Coupled Nonequilibrium Charge Transport in Single-Molecule Junctions — •Christian Schinabeck, André Erpenbeck, Rainer Härtle, and Michael Thoss
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11:30 |
CPP 30.8 |
Theoretical study of current-induced bond rupture in molecular junctions — •André Erpenbeck, Christian Schinabeck, Lukas Götzendörfer, and Michael Thoss
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11:45 |
CPP 30.9 |
Spin Transport in Helical Systems — •Matthias Geyer, Rafael Gutiérrez, Stefan Siegmund, and Gianaurelio Cuniberti
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12:00 |
CPP 30.10 |
Charge Carrier Dynamics in κ-(BEDT-TTF)2Cu[N(CN)2]Cl: From Mott Insulator to Quantum Spin Liquid — •Jana-Isabelle Polzin, Benedikt Hartmann, Takahiko Sasaki, and Jens Müller
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12:15 |
CPP 30.11 |
Charge Carrier Dynamics at the Mott transition in κ-(BEDT-TTF)2Cu[N(CN)2]Br — •Tatjana Thomas, Benedikt Hartmann, Takahiko Sasaki, and Jens Müller
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12:30 |
CPP 30.12 |
Thermal conductance of Teflon and Polyethylene: Insight from an atomistic, single-molecule level — •Marius Buerkle and Yoshihiro Asai
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