Publikationen von Ferdi Schüth
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  Zeitschriftenartikel (17)
1.
        
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           Chemical Vapor Deposition of Hollow Graphitic Spheres for Improved Electrochemical Durability. ACS Applied Energy Materials 4 (6), S. 5840 - 5847 (2021)
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           Towards maximized utilization of iridium for the acidic oxygen evolution reaction. Nano Research 12 (9), S. 2275 - 2280 (2019)
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           Shape-Controlled Nanoparticles in Pore-Confined Space. Journal of the American Chemical Society 140 (46), S. 15684 - 15689 (2018)
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           Electrochemical stability of hexagonal tungsten carbide in the potential window of fuel cells and water electrolyzers investigated in a half-cell configuration. Electrochimica Acta 270, S. 70 - 76 (2018)
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           The Space Confinement Approach Using Hollow Graphitic Spheres to Unveil Activity and Stability of Pt–Co Nanocatalysts for PEMFC. Advanced Energy Materials 7 (20), 1700835  (2017)
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           Structure-Activity-Stability Relationships for Space-Confined PtxNiy Nanoparticles in the Oxygen Reduction Reaction. ACS Catalysis 6 (12), S. 8058 - 8068 (2016)
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           High temperature stability study of carbon supported high surface area catalysts – Expanding the boundaries of ex-situ diagnostics. Electrochimica Acta 211, S. 744 - 753 (2016)
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           General Method for the Synthesis of Hollow Mesoporous Carbon Spheres with Tunable Textural Properties. ACS Applied Materials and Interfaces 7 (13), S. 12914 - 12922 (2015)
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           Activation of carbon-supported catalysts by ozonized acidic solutions for the direct implementation in (electro-)chemical reactors. Chemical Communications 51 (7), S. 1226 - 1229 (2015)
          10.
        
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           Confined-space alloying of nanoparticles for the synthesis of efficient PtNi fuel-cell catalysts. Angewandte Chemie International Edition 53 (51), S. 14250 - 14254 (2014)
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           Legieren von Nanopartikeln im begrenzten Raum: Synthese eines aktiven und stabilen PtNi-Brennstoffzellenkatalysators. Angewandte Chemie 126 (51), S. 14474 - 14479 (2014)
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           Design criteria for stable Pt/C fuel cell catalysts. Beilstein Journal of Nanotechnology 5 (1), S. 44 - 67 (2014)
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           Carbon-based yolk-shell materials for fuel cell applications. Advanced Functional Materials 24 (2), S. 220 - 232 (2014)
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           Nitrogen-doped hollow carbon spheres as a support for platinum-based electrocatalysts. ACS Catalysis 4 (11), S. 3856 - 3868 (2014)
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           Toward highly stable electrocatalysts via nanoparticle pore confinement. Journal of the American Chemical Society 134 (50), S. 20457 - 20465 (2012)
          16.
        
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           Degradation Mechanisms of Pt/C Fuel Cell Catalysts under Simulated Start−Stop Conditions. ACS Catalysis 2 (5), S. 832 - 843 (2012)
          17.
        
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           Stability investigations of electrocatalysts on the nanoscale. Energy & Environmental Science 5 (11), S. 9319 - 9330 (2012)