Berlin 2018 –
            
              wissenschaftliches Programm
            
          
        
        
        
        
        
      
      
  
    
  
  O 24: Focus Session: Structure and Chemistry of Metal-Oxide Surfaces I
  Dienstag, 13. März 2018, 10:30–13:15, MA 005
  
    
  
  
    
      
        
          
            
              |  | 10:30 | O 24.1 | Hauptvortrag:
            
            
              
                Modelling Photo-electrochemistry on Oxide Surfaces — •Harald Oberhofer | 
        
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              |  | 11:00 | O 24.2 | Vanadium dioxide as high work function electrode — •Rongbin Wang, Keke Fu, Takayoshi Katase, Hiromichi Ohta, Steffen Duhm, and Norbert Koch | 
        
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              |  | 11:15 | O 24.3 | Atomic-scale structure of the Hematite α-Fe2O3(1-102) surface — •Florian Kraushofer, Zdenek Jakub, Magdalena Bichler, Jan Hulva, Martin Setvin, Michael Schmid, Ulrike Diebold, Peter Blaha, and Gareth S. Parkinson | 
        
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              |  | 11:30 | O 24.4 | The (O12) surfaces of hematite and their interactions with water - a DFT study — •Magdalena Bichler, Florian Kraushofer, Zdenek Jakub, Gareth Parkinson, and Peter Blaha | 
        
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              |  | 11:45 | O 24.5 | Hauptvortrag:
            
            
              
                Potential-Specific Structure at the Hematite-Electrolyte Interface — Martin E. McBriarty, Joanne E. Stubbs, Peter J. Eng, Guido von Rudorff, Jochem Blumberger, and •Kevin M. Rosso | 
        
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              |  | 12:15 | O 24.6 | Hauptvortrag:
            
            
              
                Photoelectrochemistry on hematite: a first-principles view — •Anders Hellman | 
        
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              |  | 12:45 | O 24.7 | Coverage-dependent Water Agglomerates on Fe3O4(001): Insights from Experiments — •Zdenek Jakub, Matthias Meier, Jan Hulva, Jiri Pavelec, Martin Setvin, Michael Schmid, Ulrike Diebold, Cesare Franchini, and Gareth S. Parkinson | 
        
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              |  | 13:00 | O 24.8 | Transition metal clusters on tetragonal and monoclinic zirconia (ZrO2) surfaces — •Zhiyu Zou, Peter Lackner, Sabrina Mayr, Ulrike Diebold, and Michael Schmid | 
        
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