“…73,100,101 The OER-reactive centers are probably related to the iron edge-or defect sites or adsorbed iron species. 22,25 As already examined, the pre-peak reflects hole states primarily located at the O 2p states occurring as O 2p metal 3d hybridized states in nickel-oxygen compounds containing Ni 2+δ . Our results now allow for the first time to correlate these states with the Fermi level and to identify their contribution to the band structure of the active phase.…”
Detailed knowledge about the relationship between the electronic structure and the catalytic properties of a material is a fundamental brick to rationally design better oxygen evolution reaction (OER) catalysts. Here,...
“…73,100,101 The OER-reactive centers are probably related to the iron edge-or defect sites or adsorbed iron species. 22,25 As already examined, the pre-peak reflects hole states primarily located at the O 2p states occurring as O 2p metal 3d hybridized states in nickel-oxygen compounds containing Ni 2+δ . Our results now allow for the first time to correlate these states with the Fermi level and to identify their contribution to the band structure of the active phase.…”
Detailed knowledge about the relationship between the electronic structure and the catalytic properties of a material is a fundamental brick to rationally design better oxygen evolution reaction (OER) catalysts. Here,...
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