We investigated the selectivity of N-doped graphene nanoclusters (N-GNCs) toward the oxygen reduction reaction (ORR) using first-principles calculations within the density functional theory. The results show that the maximum electrode potentials (UMax) for the four-electron (4e–) pathway are higher than those for the two-electron (2e–) pathway at almost all of the reaction sites. Thus, the N-GNCs exhibit high selectivity for the 4e– pathway, that is, the 4e– reduction proceeds preferentially over the 2e– reduction. Such high selectivity results in high durability of the catalyst because H2O2, which corrodes the electrocatalyst, is not generated. For the doping sites near the edge of the cluster, the value of UMax greatly depends on the reac...
Molecular oxygen and hydrogen can be obtained from the water-splitting process through the electroly...
Fe/N/C catalysts are proven to be highly active for oxygen reduction reaction (ORR). The detailed ki...
First-principles investigations of the electrocatalytic activity toward the four-electron oxygen red...
We investigated the selectivity of N-doped graphene nanoclusters (N-GNCs) toward the oxygen reductio...
Based on first principles method, the catalytic property of nitrogen-doped graphene is investigated ...
Oxygen reduction reaction (ORR) remains challenging due to its complexity and slow kinetics. In part...
N-doped carbon-based nanomaterials are attracting a great interest as promising Pt-free electrode ca...
Doped carbon-based systems have been extensively studied over the past decade as active electrocatal...
Metal-coordinated nitrogen-doped carbons are catalytically active for oxygen reduction reaction (ORR...
Nitrogen (N) - doped carbon nanosheets have been discovered as a new class of low cost, metal- free ...
Nanocarbons doped with nitrogen (N) and/or metal-N coordination structures hold great promise in rep...
Doped carbon-based systems have been extensively studied over the past decade as active electrocatal...
The density functional theory (DFT) calculations are performed to study the oxygen reduction reactio...
The realization of a hydrogen economy would be facilitated by the discovery of a water-splitting ele...
The realization of a hydrogen economy would be facilitated by the discovery of a water-splitting ele...
Molecular oxygen and hydrogen can be obtained from the water-splitting process through the electroly...
Fe/N/C catalysts are proven to be highly active for oxygen reduction reaction (ORR). The detailed ki...
First-principles investigations of the electrocatalytic activity toward the four-electron oxygen red...
We investigated the selectivity of N-doped graphene nanoclusters (N-GNCs) toward the oxygen reductio...
Based on first principles method, the catalytic property of nitrogen-doped graphene is investigated ...
Oxygen reduction reaction (ORR) remains challenging due to its complexity and slow kinetics. In part...
N-doped carbon-based nanomaterials are attracting a great interest as promising Pt-free electrode ca...
Doped carbon-based systems have been extensively studied over the past decade as active electrocatal...
Metal-coordinated nitrogen-doped carbons are catalytically active for oxygen reduction reaction (ORR...
Nitrogen (N) - doped carbon nanosheets have been discovered as a new class of low cost, metal- free ...
Nanocarbons doped with nitrogen (N) and/or metal-N coordination structures hold great promise in rep...
Doped carbon-based systems have been extensively studied over the past decade as active electrocatal...
The density functional theory (DFT) calculations are performed to study the oxygen reduction reactio...
The realization of a hydrogen economy would be facilitated by the discovery of a water-splitting ele...
The realization of a hydrogen economy would be facilitated by the discovery of a water-splitting ele...
Molecular oxygen and hydrogen can be obtained from the water-splitting process through the electroly...
Fe/N/C catalysts are proven to be highly active for oxygen reduction reaction (ORR). The detailed ki...
First-principles investigations of the electrocatalytic activity toward the four-electron oxygen red...