Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG geförderten) Allianz- bzw. Nationallizenz frei zugänglich.This publication is with permission of the rights owner freely accessible due to an Alliance licence and a national licence (funded by the DFG, German Research Foundation) respectively.Fe-based catalytic sites for the reduction of oxygen in acidic medium have been identified by 57Fe Mössbauer spectroscopy of Fe/N/C catalysts containing 0.03 to 1.55 wt% Fe, which were prepared by impregnation of iron acetate on carbon black followed by heat-treatment in NH3 at 950 °C. Four different Fe-species were detected at all iron concentrations: three doublets assigned to molecular FeN4-like sites with their ferrous ions in...
Non-precious iron-based catalysts (Fe-NCs) require high active site density (SD) to meet the perform...
The study of non-precious metal catalysts (NPMCs) as alternatives to platinum for oxygen reduction i...
Proton exchange membrane fuel cells (PEMFCs) are a clean technology for the efficient conversion of ...
Fe based catalytic sites for the reduction of oxygen in acidic medium have been identified by 57Fe ...
Three catalysts for the electroreduction of oxygen have been prepared by pyrolyzing between 400 and ...
Iron-nitrogen-carbon materials have been known as the most promising non-noble metal catalyst for pr...
School of Energy and Chemical Engineering (Chemical Engineering)Owing to the rapid depletion of foss...
While Fe–N–C materials are a promising alternative to platinum for catalysing the oxygen reduction r...
Fe–N–C catalysts are very promising materials for fuel cells and metal–air batteries. This work give...
International audienceDeveloping efficient and inexpensive catalysts for the sluggish oxygen reducti...
Iron and nitrogen codoped carbon (Fe-N/C) catalysts have emerged as one of the most promising replac...
Iron and nitrogen doped on carbon (Fe−N/C) catalysts have emerged as promising nonprecious...
Catalytic activity for O-2 electroreduction in acidic medium has been studied. Catalysts have been p...
Fe-N-C catalysts with high O-2 reduction performance are crucial for displacing Pt in low-temperatur...
The high cost of proton-exchange-membrane fuel cells would be considerably reduced if platinum-based...
Non-precious iron-based catalysts (Fe-NCs) require high active site density (SD) to meet the perform...
The study of non-precious metal catalysts (NPMCs) as alternatives to platinum for oxygen reduction i...
Proton exchange membrane fuel cells (PEMFCs) are a clean technology for the efficient conversion of ...
Fe based catalytic sites for the reduction of oxygen in acidic medium have been identified by 57Fe ...
Three catalysts for the electroreduction of oxygen have been prepared by pyrolyzing between 400 and ...
Iron-nitrogen-carbon materials have been known as the most promising non-noble metal catalyst for pr...
School of Energy and Chemical Engineering (Chemical Engineering)Owing to the rapid depletion of foss...
While Fe–N–C materials are a promising alternative to platinum for catalysing the oxygen reduction r...
Fe–N–C catalysts are very promising materials for fuel cells and metal–air batteries. This work give...
International audienceDeveloping efficient and inexpensive catalysts for the sluggish oxygen reducti...
Iron and nitrogen codoped carbon (Fe-N/C) catalysts have emerged as one of the most promising replac...
Iron and nitrogen doped on carbon (Fe−N/C) catalysts have emerged as promising nonprecious...
Catalytic activity for O-2 electroreduction in acidic medium has been studied. Catalysts have been p...
Fe-N-C catalysts with high O-2 reduction performance are crucial for displacing Pt in low-temperatur...
The high cost of proton-exchange-membrane fuel cells would be considerably reduced if platinum-based...
Non-precious iron-based catalysts (Fe-NCs) require high active site density (SD) to meet the perform...
The study of non-precious metal catalysts (NPMCs) as alternatives to platinum for oxygen reduction i...
Proton exchange membrane fuel cells (PEMFCs) are a clean technology for the efficient conversion of ...