Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are thermodynamically competitive under common ambient conditions, and redox mechanisms connecting the two states are largely responsible for their success in partial oxidation catalysis. In our studies, CoO(1 0 0), Co3O4 (1 1 0), and Co3O4 (1 1 1) single crystal substrates have been investigated with X-ray photoelectron spectroscopy (XPS), high-resolution electron energy loss spectroscopy (HREELS), and low energy electron diffraction (LEED) for their surface reactivity toward O2 and H2O and for their stability under reducing UHV conditions. There is facile inter-conversion between CoO and Co3O4 stoichiometry at the oxide surface which, despite the c...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
The Co3O4 (110) single crystal surface has been characterized by low energy electron diffraction (LE...
Cobalt oxide Co3O4 has recently emerged as promising, noble metal-free catalyst for oxidation reacti...
Cobalt oxides, including spinel Co3O4 and rock-salt CoO, have been widely reported as promising cata...
Valence-band photoemission studies have been performed on a CoO(100) single crystal as it is slowly ...
Understanding the correlation between structure and reactivity of oxide surfaces is vital for the ra...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
The Co3O4 (110) single crystal surface has been characterized by low energy electron diffraction (LE...
Cobalt oxide Co3O4 has recently emerged as promising, noble metal-free catalyst for oxidation reacti...
Cobalt oxides, including spinel Co3O4 and rock-salt CoO, have been widely reported as promising cata...
Valence-band photoemission studies have been performed on a CoO(100) single crystal as it is slowly ...
Understanding the correlation between structure and reactivity of oxide surfaces is vital for the ra...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...