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Abstract
The development of highly efficient, stable, and selective non-precious-metal catalysts for the oxygen reduction reaction (ORR) in alkaline fuel cell applications is essential. A novel nanocomposite of zinc- and cerium-modified cobalt-manganese oxide on reduced graphene oxide mixed with Vulcan carbon (ZnCe-CMO/rGO-VC) was prepared. Physicochemical characterization reveals uniform distribution of nanoparticles strongly anchored on the carbon support resulting in a high specific surface area with abundant active sites. Electrochemical analyses demonstrate a high selectivity in the presence of ethanol compared to commercial Pt/C and excellent ORR activity and stability with a limiting current density of −3.07 mA cm–2, onset and half-wave potentials of 0.91 and 0.83 V vs reversible hydrogen reference electrode (RHE), respectively, a high electron transfer number, and an outstanding stability of 91%. Such a catalyst could be an efficient and cost-effective alternative to modern noble-metal ORR catalysts in alkaline media.
Originalsprache | englisch |
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Seiten (von - bis) | 11536-11543 |
Seitenumfang | 8 |
Fachzeitschrift | ACS Omega |
Jahrgang | 8 |
Ausgabenummer | 12 |
Frühes Online-Datum | 15 März 2023 |
DOIs | |
Publikationsstatus | Veröffentlicht - 28 März 2023 |
ASJC Scopus subject areas
- Chemische Verfahrenstechnik (insg.)
- Chemie (insg.)
Fields of Expertise
- Mobility & Production
- Advanced Materials Science
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IEA AFC Annex 31 - 2 - IEA Fortschrittliche Brennstoffzellen Annex 31: Polymerelektrolytmembran-Brennstoffzellen
1/11/20 → 31/05/24
Projekt: Foschungsprojekt
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FWF – GODEFC - Graphenoxid basierte MEEs für Direkt-Ethanol-Brennstoffzelle
Hacker, V., Wolf, S., Roschger, M. & Samsudin, A. M.
1/01/19 → 30/06/22
Projekt: Foschungsprojekt