A Facile Synthesis of Noble-Metal-Free Catalyst Based on Nitrogen Doped Graphene Oxide for Oxygen Reduction Reaction
Простой синтез катализатора, не содержащего благородных металлов, на основе оксида графена, легированного азотом, для реакции восстановления кислорода
2022-01-21
SCID: 54.1/hvusvtq3
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mechanochemical synthesismetal-free electrocatalystnitrogen-doped graphene oxideoxygen reduction reactionplanetary ball milling
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Abstract (AI)
A simple method for the mechanochemical synthesis of an effective metal-free electrocatalyst for the oxygen reduction reaction was demonstrated. A nitrogen-doped carbon material was obtained by grinding a mixture of graphene oxide and melamine in a planetary ball mill. The resulting material was characterized by XPS, EPR, and Raman and IR spectroscopy. The nitrogen concentration on the N-bmGO surface was 5.5 at.%. The nitrogen-enriched graphene material (NbmGO has half-wave potential of -0.175/-0.09 V and was shown to possess high activity as an electrocatalyst for oxygen reduction reaction. The electrocatalytic activity of NbmGO can be associated with a high concentration of active sites for the adsorption of oxygen molecules on its surface. The high current retention (93% for 12 h) after continuous polarization demonstrates the excellent long-term stability of NbmGO.
Key Findings
1
A simple mechanochemical route produces a nitrogen-doped graphene oxide catalyst by grinding graphene oxide with melamine in a planetary ball mill.
2
NbmGO demonstrates excellent long-term stability, retaining 93% of its current after 12 hours of continuous polarization.
3
NbmGO exhibits high oxygen-reduction electrocatalytic activity, with reported half-wave potentials of −0.175/−0.09 V.
4
The catalyst’s activity is attributed to a high concentration of surface sites capable of adsorbing oxygen molecules.
5
The resulting nitrogen-enriched graphene material contains 5.5 at.% nitrogen on its surface, as determined by XPS characterization.
Research Object
nitrogen-doped graphene oxide (NbmGO) metal-free electrocatalyst for the oxygen reduction reaction
Research Subject
oxygen-reduction electrocatalytic activity, active-site-mediated oxygen adsorption, and long-term stability of NbmGO
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2022-01-21
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