Oxygen Reduction Reaction (ORR) performance of iron and nitrogen co-doped porous carbon nanoparticles (Fe-NPC) with various physical and (electro) chemical properties have been investigated. Fe-NPC nanoparticles are synthesized via a facile soft-templating procedure by using Iron (III) chloride hexa-hydrate as iron precursor and aminophenol-formaldehyde resin as both carbon and nitrogen precursor. Fe-NPC nanoparticles shows high surface area (443.83 m2g-1), high pore volume (0.52 m3g-1), narrow mesopore size distribution (ca. 3.8 nm), high conductivity (IG/ID=1.04), high kinetic limiting current (11.71 mAcm-2) and more positive onset potential (-0.106 V) compared to metal-free NPC nanoparticles (-0.295V) which make it high efficient ORR met...
A new approach was tested as nitrogen-doped carbon nanofibers (N-CNFs) were synthesized by using uni...
The intense research interest in nanomaterials is largely fueled by the unique properties of nanosca...
Non-precious iron-nitrogen doped carbon material (Fe-N/C) is the most promising candidate to replace...
We report the porous transition metal-nitrogen doped carbon nanostructures as cathode catalysts...
We report the porous transition metal-nitrogen doped carbon nanostructures as cathode catalysts...
Iron and nitrogen co-doped carbons show great potential for high-performance electrochemical oxygen ...
A novel Fe–N-doped carbon with a dendritic structure is analyzed as an electrocatalyst for the oxyge...
The development of effective oxygen electrode catalysts for renewable energy technologies such as me...
The development of effective oxygen electrode catalysts for renewable energy technologies such as me...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
N-doped carbon catalysts have attracted great attention as potential alternatives to expensive Pt-ba...
Metal, N codoped nanoporous carbon (N-M-nC, M - Fe, Co) is prepared by in situ incorporation of the ...
The intense research interest in nanomaterials is largely fueled by the unique properties of nanosca...
The major technical obstacles in commercialization of microbial fuel cell technology are the sluggis...
A new approach was tested as nitrogen-doped carbon nanofibers (N-CNFs) were synthesized by using uni...
A new approach was tested as nitrogen-doped carbon nanofibers (N-CNFs) were synthesized by using uni...
The intense research interest in nanomaterials is largely fueled by the unique properties of nanosca...
Non-precious iron-nitrogen doped carbon material (Fe-N/C) is the most promising candidate to replace...
We report the porous transition metal-nitrogen doped carbon nanostructures as cathode catalysts...
We report the porous transition metal-nitrogen doped carbon nanostructures as cathode catalysts...
Iron and nitrogen co-doped carbons show great potential for high-performance electrochemical oxygen ...
A novel Fe–N-doped carbon with a dendritic structure is analyzed as an electrocatalyst for the oxyge...
The development of effective oxygen electrode catalysts for renewable energy technologies such as me...
The development of effective oxygen electrode catalysts for renewable energy technologies such as me...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
N-doped carbon catalysts have attracted great attention as potential alternatives to expensive Pt-ba...
Metal, N codoped nanoporous carbon (N-M-nC, M - Fe, Co) is prepared by in situ incorporation of the ...
The intense research interest in nanomaterials is largely fueled by the unique properties of nanosca...
The major technical obstacles in commercialization of microbial fuel cell technology are the sluggis...
A new approach was tested as nitrogen-doped carbon nanofibers (N-CNFs) were synthesized by using uni...
A new approach was tested as nitrogen-doped carbon nanofibers (N-CNFs) were synthesized by using uni...
The intense research interest in nanomaterials is largely fueled by the unique properties of nanosca...
Non-precious iron-nitrogen doped carbon material (Fe-N/C) is the most promising candidate to replace...