Ken-ichiro OtaJunji HirataTakaaki NagaiMasazumi AraoMasashi MatsumotoYoshiyuki KurodaKoichi MatsuzawaHideto ImaiShigenori MitsushimaAkimitsu Ishihara
Development of nonplatinum electrocatalysts for the oxygen reduction reaction (ORR) is necessary for wide commercialization of polymer electrolyte fuel cells. We focused on Group 4 and 5 metal oxide-based compounds for use as nonprecious metal cathodes. We need to investigate the active sites of oxide-based cathodes at the atomic level to enhance the oxygen reduction activity. We used rutile TiO2 single crystals with (100), (001), (110), and (110) faces as model electrodes. The ORR activity strongly depended on the crystal face. In addition, reduction under pure hydrogen at 600 °C for 1 h was effective in enhancing the ORR activity of the (110) plane.
Ken‐ichiro OtaJunji HirataTakaaki NagaiMasazumi AraoMasashi MatsumotoYoshiyuki KurodaKoichi MatsuzawaHideto ImaiShigenori MitsushimaAkimitsu Ishihara
Akimitsu IshiharaTakaaki NagaiNoriko MuraseMasazumi AraoYoshiyuki KurodaKoichi MatsuzawaShigenori MitsushimaKo FurukawaHideto ImaiKunchan LeeKen-ichiro Ota
Akimitsu IshiharaTakaaki NagaiNoriko MuraseMasazumi AraoYoshiyuki KurodaKoichi MatsuzawaShigenori MitsushimaKo FurukawaHideto ImaiKunchan LeeKen‐ichiro Ota
Laurie A. KingDebora BelamiUmesh S. JonnalagaddaWenhao FanJames KwanYagya N. Regmi
D. M. J. ComptonTomas E. Firle