The 79th JSAP Autumn Meeting, 2018

Presentation information

Oral presentation

17 Nanocarbon Technology » 17.2 Graphene

[21a-311-1~14] 17.2 Graphene

Fri. Sep 21, 2018 9:00 AM - 12:45 PM 311 (Cascade)

Satofumi Souma(Kobe Univ.)

9:00 AM - 9:15 AM

[21a-311-1] Oxygen reduction reaction on the basal plane of N-doped graphene

〇(D)haruyuki matsuyama1, Jun Nakamura1 (1.UEC-Tokyo)

Keywords:graphene, catalyst, first-principles calculations

We investigated the oxygen reduction reaction (ORR) activity for the hexagonal N-doped graphene nanoclusters using first-principles calculations within the density functional theory. We consider the N atoms not only just at the edge, but in the vicinity of the edge. The maximum potential for the four-electron (4e-) pathway of the ORR is higher than that for the two-electron (2e-) pathway in almost all reaction sites. It is noted that the high selectivity for the 4e- pathway is assured not just at the edge but inside the cluster. We can recognize the variance of the maximum potentials at each reaction site near the edge but at the deeper site the maximum potential for the 4e- and 2e- pathways are distinctly decoupled. It is suggested that the stable reaction is more likely to be achieved at the deeper doping site of the cluster, resulting in the stable operation of the fuel cell. Further, we will discuss confinement effects on the ORR activity.