Effect of metal species on the stability of Me-N-C catalysts during accelerated stress tests mimicking the start-up and shut-down conditions
Autor: | Stephanie Jeannie Dolique, Hongbin Zhang, Sebastian Klemenz, Fabian Grimm, Carolin Wittich, Robert W. Stark, Ali Shahraei, Hans-Joachim Kleebe, Ulrike I. Kramm, Ioanna Martinaiou |
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Rok vydání: | 2017 |
Předmět: |
inorganic chemicals
General Chemical Engineering Inorganic chemistry chemistry.chemical_element 02 engineering and technology 010402 general chemistry 021001 nanoscience & nanotechnology Start up 01 natural sciences Nitrogen 0104 chemical sciences Catalysis Metal Stress (mechanics) symbols.namesake chemistry visual_art Electrochemistry visual_art.visual_art_medium symbols Degradation (geology) 0210 nano-technology Raman spectroscopy Selectivity |
Zdroj: | Electrochimica Acta. 243:183-196 |
ISSN: | 0013-4686 |
Popis: | Currently, Me-N-C catalysts are the most prominent alternative to Pt/C catalysts for the oxygen reduction reaction in acidic media. It is well known that the achievable activity and selectivity strongly correlates with the nature of metal species. However, so far the effect of the metal species on the stability of these catalysts was not investigated systematically. In this work, a group of 13 different Me-N-C catalysts were investigated with respect to their activity and stability in accelerated stress tests mimicking the start-up and shut-down conditions (AST_SSC). A strong correlation between the nitrogen content assigned to different MeN4 sites and the D3 band from Raman spectroscopy is found. Moreover, we were able to correlate changes in the D3 band and variations in the displacement of the metal atoms out of the N4 plane with the losses in ORR activity. Based on these findings, we propose a model for the degradation of Me-N-C catalysts during accelerated stress tests mimicking the start-up and shut-down conditions. |
Databáze: | OpenAIRE |
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