Publikationen von Karl Johann Jakob Mayrhofer
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  Zeitschriftenartikel (146)
101.
        
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           Design criteria for stable Pt/C fuel cell catalysts. Beilstein Journal of Nanotechnology 5 (1), S. 44 - 67 (2014)
          102.
        
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           Carbon-based yolk-shell materials for fuel cell applications. Advanced Functional Materials 24 (2), S. 220 - 232 (2014)
          103.
        
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           Oxygen electrochemistry as a cornerstone for sustainable energy conversion. Angewandte Chemie International Edition 53 (1), S. 102 - 121 (2014)
          104.
        
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           Die Elektrochemie des Sauerstoffs als Meilenstein für eine nachhaltige Energieumwandlung. Angewandte Chemie 126 (1), S. 104 - 124 (2014)
          105.
        
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           A comparative study on gold and platinum dissolution in acidic and alkaline media. Journal of the Electrochemical Society 161 (12), S. H822 - H830 (2014)
          106.
        
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           Effect of temperature on gold dissolution in acidic media. Journal of the Electrochemical Society 161 (9), S. H501 - H507 (2014)
          107.
        
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           Nitrogen-doped hollow carbon spheres as a support for platinum-based electrocatalysts. ACS Catalysis 4 (11), S. 3856 - 3868 (2014)
          108.
        
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           Investigating the real time dissolution of Mg using online analysis by ICP-MS. Journal of the Electrochemical Society 161 (3), S. C115 - C119 (2014)
          109.
        
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           The impact of chloride ions and the catalyst loading on the reduction of H2O2 on high-surface-area platinum catalysts. Electrochimica Acta 110, S. 790 - 795 (2013)
          110.
        
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           Towards a comprehensive understanding of platinum dissolution in acidic media. Chemical Science 5 (2), S. 631 - 638 (2013)
          111.
        
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           The effect of particle proximity on the oxygen reduction rate of size-selected platinum clusters. Nature Materials 12 (10), S. 919 - 924 (2013)
          112.
        
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           Time Evolution of the Stability and Oxygen Reduction Reaction Activity of PtCu/C Nanoparticles. ChemCatChem 5 (9), S. 2627 - 2635 (2013)
          113.
        
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           Monitoring of anaerobic microbially influenced corrosion via electrochemical frequency modulation. Electrochimica Acta 105, S. 239 - 247 (2013)
          114.
        
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           Gold dissolution: Towards understanding of noble metal corrosion. RSC Advances 3 (37), S. 16516 - 16527 (2013)
          115.
        
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           Element-Resolved Corrosion Analysis of Stainless-Type Glass-Forming Steels. Science 341 (6144), S. 372 - 376 (2013)
          116.
        
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           The impact of spectator species on the interaction of H2O2 with platinum – implications for the oxygen reduction reaction pathways. Physical Chemistry Chemical Physics 15 (21), S. 8058 - 8068 (2013)
          117.
        
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           Effect of thiol self-assembled monolayers and plasma polymer films on dealloying of Cu–Au alloys. RSC Advances 3 (18), S. 6586 - 6595 (2013)
          118.
        
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           Electrochemical dissolution of gold in acidic medium. Electrochemistry Communucations 28, S. 44 - 46 (2013)
          119.
        
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           Corrigendum to “Time and potential resolved dissolution analysis of rhodium using a microelectrochemical flow cell coupled to an ICP-MS” [Journal of Electroanalytical Chemistry 677–680 (2012) 50–55] (S1572665712001865) (10.1016/j.jelechem.2012.05.006)). Journal of Electroanalytical Chemistry 693, S. 127 (2013)
          120.
        
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           Accelerated cathodic reaction in microbial corrosion of iron due to direct electron uptake by sulfate-reducing bacteria. Corrosion Science 66, S. 88 - 96 (2013)