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Journal Article (24)
1.
Journal Article
6 (8), pp. 2219 - 2223 (2014)
Dissolution of noble metals during oxygen evolution in acidic media. ChemCatChem 2.
Journal Article
5 (1), pp. 44 - 67 (2014)
Design criteria for stable Pt/C fuel cell catalysts. Beilstein Journal of Nanotechnology 3.
Journal Article
53 (1), pp. 102 - 121 (2014)
Oxygen electrochemistry as a cornerstone for sustainable energy conversion. Angewandte Chemie International Edition 4.
Journal Article
126 (1), pp. 104 - 124 (2014)
Die Elektrochemie des Sauerstoffs als Meilenstein für eine nachhaltige Energieumwandlung. Angewandte Chemie 5.
Journal Article
110, pp. 790 - 795 (2013)
The impact of chloride ions and the catalyst loading on the reduction of H2O2 on high-surface-area platinum catalysts. Electrochimica Acta 6.
Journal Article
5 (2), pp. 631 - 638 (2013)
Towards a comprehensive understanding of platinum dissolution in acidic media. Chemical Science 7.
Journal Article
3 (37), pp. 16516 - 16527 (2013)
Gold dissolution: Towards understanding of noble metal corrosion. RSC Advances 8.
Journal Article
15 (21), pp. 8058 - 8068 (2013)
The impact of spectator species on the interaction of H2O2 with platinum – implications for the oxygen reduction reaction pathways. Physical Chemistry Chemical Physics 9.
Journal Article
28, pp. 44 - 46 (2013)
Electrochemical dissolution of gold in acidic medium. Electrochemistry Communucations 10.
Journal Article
693, p. 127 (2013)
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 11.
Journal Article
134 (50), pp. 20457 - 20465 (2012)
Toward highly stable electrocatalysts via nanoparticle pore confinement. Journal of the American Chemical Society 12.
Journal Article
51 (50), pp. 12613 - 12615 (2012)
Dissolution of Platinum: Limits for the Deployment of Electrochemical Energy Conversion? Angewandte Chemie, International Edition 13.
Journal Article
124 (50), pp. 12782 - 12785 (2012)
Die Auflösung von Platin – Grenzen für den Einsatz zur elektrochemischen Energieumwandlung? Angewandte Chemie 14.
Journal Article
159 (11), pp. F670 - F675 (2012)
A Scanning Flow Cell System for Fully Automated Screening of Electrocatalyst Materials. Journal of the Electrochemical Society 15.
Journal Article
677–680, pp. 50 - 55 (2012)
Time and potential resolved dissolution analysis of rhodium using a microelectrochemical flow cell coupled to an ICP-MS. Journal of Electroanalytical Chemistry 16.
Journal Article
48 (53), pp. 6660 - 6662 (2012)
The influence of non-covalent interactions on the hydrogen peroxide electrochemistry on platinum in alkaline electrolytes. Chemical Communications 17.
Journal Article
70, pp. 355 - 359 (2012)
Degradation of polycrystalline rhodium and rhodium nanoparticles. Electrochimica Acta 18.
Journal Article
2 (5), pp. 832 - 843 (2012)
Degradation Mechanisms of Pt/C Fuel Cell Catalysts under Simulated Start−Stop Conditions. ACS Catalysis 19.
Journal Article
14, pp. 7384 - 7391 (2012)
Hydrogen peroxide electrochemistry on platinum: Towards understanding the oxygen reduction reaction mechanism. Physical Chemistry and Chemical Physics 20.
Journal Article
5 (11), pp. 9319 - 9330 (2012)
Stability investigations of electrocatalysts on the nanoscale. Energy & Environmental Science