International audiencePyrolyzed Fe-N-C materials are promising platinum-group-metal-free catalysts for proton-exchange membrane fuel cell cathodes. However, the detailed structure, oxidation, and spin states of their active sites are still undetermined. Fe-57 Mossbauer spectroscopy has identified FeNx moieties as the most active sites, with their fingerprint being a doublet in low-temperature Mossbauer spectra. However, the interpretation of the doublets for such materials has lacked theoretical basis. Here, we applied density functional theory to calculate the quadrupole splitting energy of doublets (Delta E-QS) for a range of FeNx structures in different oxidation and spin states. The calculated and experimental values are then compared f...
Fe based catalytic sites for the reduction of oxygen in acidic medium have been identified by 57Fe ...
FeNC catalysts are the most promising substitutes for Pt‐based catalysts for the oxygen reduction re...
Catalyst systems for fuel cell applications are an important and auspicious aspect to turn the fossi...
International audiencePyrolyzed Fe-N-C materials are promising platinum-group-metal-free catalysts f...
International audienceWhile Fe-N-C materials are a promising alternative to platinum for catalyzing ...
The transition metal iron is a cheap and abundant element. It has a versatile chemistry, which makes...
While Fe–N–C materials are a promising alternative to platinum for catalysing the oxygen reduction r...
Proton exchange membrane fuel cells (PEMFCs) are a clean technology for the efficient conversion of ...
Iron-nitrogen-carbon materials have been known as the most promising non-noble metal catalyst for pr...
Platinum group metal-free (PGM-free) catalysts based on transition metal-nitrogen-carbon nanomateria...
Fe–N–C catalysts are very promising materials for fuel cells and metal–air batteries. This work give...
Fe based catalytic sites for the reduction of oxygen in acidic medium have been identified by 57Fe ...
FeNC catalysts are the most promising substitutes for Pt‐based catalysts for the oxygen reduction re...
Catalyst systems for fuel cell applications are an important and auspicious aspect to turn the fossi...
International audiencePyrolyzed Fe-N-C materials are promising platinum-group-metal-free catalysts f...
International audienceWhile Fe-N-C materials are a promising alternative to platinum for catalyzing ...
The transition metal iron is a cheap and abundant element. It has a versatile chemistry, which makes...
While Fe–N–C materials are a promising alternative to platinum for catalysing the oxygen reduction r...
Proton exchange membrane fuel cells (PEMFCs) are a clean technology for the efficient conversion of ...
Iron-nitrogen-carbon materials have been known as the most promising non-noble metal catalyst for pr...
Platinum group metal-free (PGM-free) catalysts based on transition metal-nitrogen-carbon nanomateria...
Fe–N–C catalysts are very promising materials for fuel cells and metal–air batteries. This work give...
Fe based catalytic sites for the reduction of oxygen in acidic medium have been identified by 57Fe ...
FeNC catalysts are the most promising substitutes for Pt‐based catalysts for the oxygen reduction re...
Catalyst systems for fuel cell applications are an important and auspicious aspect to turn the fossi...