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Regensburg 2022 – wissenschaftliches Programm

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O: Fachverband Oberflächenphysik

O 41: Graphene: Growth, Substrate Interaction, Intercalation, and Doping

Mittwoch, 7. September 2022, 10:30–12:30, S052

10:30 O 41.1 Stone-Wales defect: molecular model system reveals increased interaction with Cu(111) surface — •Benedikt P. Klein, Alexander Ihle, Stefan R. Kachel, Lukas Ruppenthal, Samuel J. Hall, Daniel Ebeling, Ralf Tonner-Zech, Reinhard J. Maurer, Andre Schirmeisen, and J. Michael Gottfried
10:45 O 41.2 Using polyaromatic hydrocarbons for graphene growth — •Matthew A. Stoodley, Benedikt P. Klein, Luke A. Rochford, Matthew Edmondson, Marc Walker, Tien-Lin Lee, Alexander Saywell, Reinhard J. Maurer, and David A. Duncan
11:00 O 41.3 Determining the stability and catalytic formation of graphene on liquid Cu using machine-learning potentials — •Hao Gao, Valentina Belova, Maciej Jankowski, Hendrik H. Heenen, Gilles Renaud, and Karsten Reuter
11:15 O 41.4 Properties of epitaxial graphene on various SiC terminations and polytypes investigated by low-energy electron microscopy — •Philip Schädlich, Davood Momeni Pakdehi, Florian Speck, Klaus Pierz, and Thomas Seyller
11:30 O 41.5 Quasiparticle Interference Effects Revealed in Potassium-Intercalated Epitaxial Monolayer GrapheneTobias Huempfner, •Felix Otto, Roman Forker, and Torsten Fritz
11:45 O 41.6 Structural and electronic properties of a van der Waals heterostructure of two-dimensional Pb and epitaxial graphene — •Bharti Matta, Philipp Rosenzweig, Olaf Bolkenbaas, Kathrin Küster, and Ulrich Starke
12:00 O 41.7 Surface Transport Properties of Pb- and Sn-intercalated Graphene — •M. Gruschwitz, C. Ghosal, Z. Mamiyev, J. Koch, S. Wolff, T. Seyller, and C. Tegenkamp
12:15 O 41.8 Electron correlation effects in highly-doped single-layer graphene — •Vivien Enenkel, Philipp Rosenzweig, Hrag Karakachian, Fabian Paschke, Ulrich Starke, and Mikhail Fonin
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