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Regensburg 2016 – scientific programme

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O: Fachverband Oberflächenphysik

O 82: Structure of Solid/Liquid Interfaces I

Thursday, March 10, 2016, 10:30–13:00, H6

10:30 O 82.1 Probing the TiO2/Liquid Interface of a Photoelectrochemical Cell by X-Ray Photoelectron Spectroscopy — •Michael F. Lichterman, Matthias H. Richter, Shu Hu, Ethan J. Crumlin, Stephanus Axnanda, Marco Favaro, Walter Drisdell, Zahid Hussain, Bruce S. Brunschwig, Zhi Liu, Nathan S. Lewis, and Hans-Joachim Lewerenz
10:45 O 82.2 An Electrochemical, resonant Photoemission and Ambient Pressure-X-ray Photoelectron Spectroscopic Investigation of Si/TiO2/Ni/Electrolyte Interfaces — •Matthias H. Richter, Michael F. Lichterman, Shu Hu, Ethan J. Crumlin, Stephanus Axnanda, Marco Favaro, Walter Drisdell, Zahid Hussain, Bruce S. Brunschwig, Zhi Liu, Nathan S. Lewis, and Hans-Joachim Lewerenz
11:00 O 82.3 Model free method to measure the surface potential of colloidal particles in aqueous solution — •Grazia Gonella, Cornelis Lütgebaucks, and Sylvie Roke
11:15 O 82.4 Adsorption of Organic Molecules on Iron Oxide Model Surfaces in Solution — •Peter Seidel and Martin Sterrer
11:30 O 82.5 Quantitative Measurements of Electrochemical Strain using Atomic Force Microscopy — •Valon Lushta, Thomas Göddenhenrich, Bernhard Roling, and André Schirmeisen
11:45 O 82.6 Solvent- and deposition temperature-dependent 2D supramolecular assemblies of trimesic acid at the liquid-graphite interface revealed by scanning tunneling microscopy — •Yen D.C Nguyen, Lars Smykalla, Ha N.T Nguyen, and Michael Hietschold
  12:00 O 82.7 The contribution has been withdrawn.
12:15 O 82.8 Porphyrin Metalation at the Solid-Liquid Interface — •Matthias Franke, Florencia Marchini, Hans-Peter Steinrück, Ole Lytken, and Federico José Williams
12:30 O 82.9 Potential step experiments on AgxPt1−x/Pt(111) surface alloys - the influence of the upper potential limit on surface structure — •Stephan Beckord, Sylvain Brimaud, and R. Jürgen Behm
12:45 O 82.10 Surface engineering of nanomaterials for electrochemical energy conversion and storage — •Min Zhou and Yong Lei
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