Iron-nitrogen-carbon materials have been known as the most promising non-noble metal catalyst for proton-exchange membrane fuel cells (PEMFCs), but the genuine active sites for oxygen reduction reaction (ORR) are still arguable. Herein, by the thorough density functional theory investigations, we unravel that the planar Fe2N6 site exhibits excellent ORR catalytic activity over both FeN3 and FeN4 sites, and the potential-determining step is determined to be the *OH hydrogenation step with an overpotential of 0.415 V. The ORR activity of Fe2N6 site originates from the low spin magnetic moment (1.11 μB), which leads to high antibonding states and low d-band center of the Fe center, further leads to weak binding strength of *OH species. The den...
ABSTRACT: Detailed understanding of the nature of the active centers in non-precious-metal-based ele...
Three catalysts for the electroreduction of oxygen have been prepared by pyrolyzing between 400 and ...
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...
Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG geförderten) Allianz- bzw. ...
The transition metal iron is a cheap and abundant element. It has a versatile chemistry, which makes...
International audienceDeveloping efficient and inexpensive catalysts for the sluggish oxygen reducti...
Development of effective nonprecious metal and nitrogen codoped carbon catalysts for the oxygen redu...
Fe–N–C catalysts are very promising materials for fuel cells and metal–air batteries. This work give...
While Fe–N–C materials are a promising alternative to platinum for catalysing the oxygen reduction r...
An important challenge in low temperature fuel cell development is to find high performance non-prec...
Controllably constructing nitrogen-modified divacancies (ND) in carbon substrates to immobilize atom...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Controllably constructing nitrogen-modified divaca...
Iron and nitrogen doped on carbon (Fe−N/C) catalysts have emerged as promising nonprecious...
5 pags., 2 figs., 2 tabs.The study of non-precious metal catalysts (NPMCs) as alternatives to platin...
ABSTRACT: Detailed understanding of the nature of the active centers in non-precious-metal-based ele...
Three catalysts for the electroreduction of oxygen have been prepared by pyrolyzing between 400 and ...
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...
Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG geförderten) Allianz- bzw. ...
The transition metal iron is a cheap and abundant element. It has a versatile chemistry, which makes...
International audienceDeveloping efficient and inexpensive catalysts for the sluggish oxygen reducti...
Development of effective nonprecious metal and nitrogen codoped carbon catalysts for the oxygen redu...
Fe–N–C catalysts are very promising materials for fuel cells and metal–air batteries. This work give...
While Fe–N–C materials are a promising alternative to platinum for catalysing the oxygen reduction r...
An important challenge in low temperature fuel cell development is to find high performance non-prec...
Controllably constructing nitrogen-modified divacancies (ND) in carbon substrates to immobilize atom...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Controllably constructing nitrogen-modified divaca...
Iron and nitrogen doped on carbon (Fe−N/C) catalysts have emerged as promising nonprecious...
5 pags., 2 figs., 2 tabs.The study of non-precious metal catalysts (NPMCs) as alternatives to platin...
ABSTRACT: Detailed understanding of the nature of the active centers in non-precious-metal-based ele...
Three catalysts for the electroreduction of oxygen have been prepared by pyrolyzing between 400 and ...
Proton exchange membrane fuel cells (PEMFCs) are a clean technology for the efficient conversion of ...