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Regensburg 2016 – wissenschaftliches Programm

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O: Fachverband Oberflächenphysik

O 14: Surface Chemical Dynamics

Montag, 7. März 2016, 15:00–18:00, S053

15:00 O 14.1 The Importance of Meta-Stable Structures and High Spin States for Oxygen Activation on Small Gas-Phase Silver Clusters from First Principles — •Weiqi Wang, Luca M. Ghiringhelli, and Matthias Scheffler
15:15 O 14.2 Long-lived reactive trapped electrons on amorphous ice surfaces — •Sarah King, Daniel Wegkamp, Michael Meyer, Martin Wolf, and Julia Stähler
15:30 O 14.3 Reaction-diffusion modeling of hydrogen in beryllium — •Mirko Wensing, Dmitry Matveev, and Christian Linsmeier
15:45 O 14.4 Deuterium/Wasserstoff-Isotopenaustausch an Beryllium und Berylliumnitrid — •Petra Dollase, Michael Eichler, Martin Köppen, Timo Dittmar und Christian Linsmeier
16:00 O 14.5 Untersuchung der Rückhaltemechanismen von Wasserstoff in Beryllium Wolfram Verbindungen — •Michael Eichler, Timo Dittmar und Christian Linsmeier
16:15 O 14.6 Hauptvortrag: In-situ Studies of the Reactivity of Pt Model Catalysts: from Flat Surfaces to Nanoparticles — •Christian Papp
16:45 O 14.7 Temperature induced change in aliphatic monolayers observed by vibrational sum-frequency generation spectroscopy — •Andre Beier-Hannweg, Katharina Maus, Michael Lackner, Thorsten Balgar, Jan Weber, and Eckart Hasselbrink
17:00 O 14.8 Reaction mechanisms by direct imaging of individual intermediates stabilized by surface dissipation and entropy — •Alexander Riss, Alejandro Pérez Paz, Sebastian Wickenburg, Hsin-Zon Tsai, Dimas G. de Oteyza, Angel Rubio, Felix R. Fischer, and Michael F. Crommie
17:15 O 14.9 Exciting phonons: When molecules meet surfaces — •Vanessa Jane Bukas and Karsten Reuter
17:30 O 14.10 Inelastic Hydrogen Atom Scattering: Role of Electron-Hole Pair Excitations — •Oliver Bünermann, Hongyan Jiang, Yvonne Dorenkamp, and Alec Wodtke
17:45 O 14.11 Adatom Diffusion on Metal Surfaces: Disentangling Phononic and Electronic Energy Dissipation — •Simon P. Rittmeyer, Patrick Gütlein, and Karsten Reuter
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