Immobilizing metal atoms by multiple nitrogen atoms has triggered exceptional catalytic activity toward many critical electrochemical reactions due to their merits of highly unsaturated coordination and strong metal-substrate interaction. Herein, atomically dispersed Fe-NC material with precise sulfur modification to Fe periphery (termed as Fe-NSC) was synthesized, X-ray absorption near edge structure analysis confirmed the central Fe atom being stabilized in a specific configuration of Fe(N3)(N–C–S). By enabling precisely localized S doping, the electronic structure of Fe-N4 moiety could be mediated, leading to the beneficial adjustment of absorption/desorption properties of reactant/intermediate on Fe center. Density functional theory sim...
An Fe–N–C catalyst with an FeN4 active moiety has gained ever-increasing attention for the oxygen re...
Non-precious Fe/N co-modified carbon electrocatalysts have attracted great attention due to their hi...
Single Fe atom dispersed carbon nanostructures show promising oxygen reduction reaction (ORR) activi...
Supplementary files for article Atomically dispersed Fe-N4 modified with precisely located S for hig...
Utilizing Zn as a "fencing"agent has enabled the pyrolytic synthesis of atomically dispersed metal-n...
Utilizing Zn as a "fencing"agent has enabled the pyrolytic synthesis of atomically dispersed metal-n...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Controllably constructing nitrogen-modified divaca...
Controllably constructing nitrogen-modified divacancies (ND) in carbon substrates to immobilize atom...
The development of low-cost, efficient, and stable electrocatalysts toward the oxygen reduction reac...
Single-atom metal–nitrogen–carbon (M–N–C) catalysts have sparked intense interests, but the catalyti...
Room-temperature sodium-sulfur batteries have significant potential for large-scale applications due...
Replacement of Pt-based oxygen reduction reaction (ORR) catalysts with non-precious metal catalysts ...
Development of cost-effective electrocatalysts as an alternative to platinum for oxygen reduction re...
The need for highly efficient and economical non-Pt electrocatalysts for facilitating the oxygen red...
Iron and nitrogen co-doped carbons show great potential for high-performance electrochemical oxygen ...
An Fe–N–C catalyst with an FeN4 active moiety has gained ever-increasing attention for the oxygen re...
Non-precious Fe/N co-modified carbon electrocatalysts have attracted great attention due to their hi...
Single Fe atom dispersed carbon nanostructures show promising oxygen reduction reaction (ORR) activi...
Supplementary files for article Atomically dispersed Fe-N4 modified with precisely located S for hig...
Utilizing Zn as a "fencing"agent has enabled the pyrolytic synthesis of atomically dispersed metal-n...
Utilizing Zn as a "fencing"agent has enabled the pyrolytic synthesis of atomically dispersed metal-n...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Controllably constructing nitrogen-modified divaca...
Controllably constructing nitrogen-modified divacancies (ND) in carbon substrates to immobilize atom...
The development of low-cost, efficient, and stable electrocatalysts toward the oxygen reduction reac...
Single-atom metal–nitrogen–carbon (M–N–C) catalysts have sparked intense interests, but the catalyti...
Room-temperature sodium-sulfur batteries have significant potential for large-scale applications due...
Replacement of Pt-based oxygen reduction reaction (ORR) catalysts with non-precious metal catalysts ...
Development of cost-effective electrocatalysts as an alternative to platinum for oxygen reduction re...
The need for highly efficient and economical non-Pt electrocatalysts for facilitating the oxygen red...
Iron and nitrogen co-doped carbons show great potential for high-performance electrochemical oxygen ...
An Fe–N–C catalyst with an FeN4 active moiety has gained ever-increasing attention for the oxygen re...
Non-precious Fe/N co-modified carbon electrocatalysts have attracted great attention due to their hi...
Single Fe atom dispersed carbon nanostructures show promising oxygen reduction reaction (ORR) activi...