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
V. P. Vasiliev, Roman A. Manzhos, V. K. Kochergin, А. Г. Кривенко, Е. Н. Кабачков, А. В. Куликов, Yu. M. Shul’ga, G. L. Gutsev
2022-01-21

mechanochemical synthesismetal-free electrocatalystnitrogen-doped graphene oxideoxygen reduction reactionplanetary ball milling
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.
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.

nitrogen-doped graphene oxide (NbmGO) metal-free electrocatalyst for the oxygen reduction reaction

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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Authors
V. P. Vasiliev
Roman A. Manzhos
V. K. Kochergin
А. Г. Кривенко
Е. Н. Кабачков
А. В. Куликов
Yu. M. Shul’ga
G. L. Gutsev
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