We have studied adsorption of CO on Fe3O4(1 1 1) films grown on a Pt(1 1 1) substrate by temperature programmed desorption (TPD), infrared reflection absorption spectroscopy (IRAS) and high resolution electron energy loss spectroscopy (HREELS). Three adsorption states are observed, from which CO desorbs at ~110, 180, and 230 K. CO adsorbed in these states exhibits stretching frequencies at ~2115–2140, 2080 and 2207 cm_1, respectively. The adsorption results are discussed in terms of different structural models previously reported. We suggest that the Fe3O4(1 1 1) surface is terminated by 1/2 ML of iron, with an outermost 1/4 ML consisting of octahedral Fe2+ cations situated above an 1/4 ML of tetrahedral Fe3+ ions, in agreement with previou...
The adsorption of water on ordered epitaxial FeO(111) and Fe3O4(111) films was investigated by ther...
The adsorption of water on ordered epitaxial FeO(111) and Fe3O4(111) films was investigated by therm...
We monitored adsorption of water on a well-defined Fe3O4(111) film surface at different temperatures...
We have studied adsorption of CO on Fe3O4(1 1 1) films grown on a Pt(1 1 1) substrate by temperature...
Abstract We have studied adsorption of CO on Fe 3 O 4 (1 1 1) films grown on a Pt(1 1 1) substrate b...
Although the (111) surface of Fe<sub>3</sub>O<sub>4</sub> (magnetite) has been investigated for more...
Although the (111) surface of Fe<sub>3</sub>O<sub>4</sub> (magnetite) has been investigated for more...
We monitored the adsorption of carbon dioxide (CO2) on well-ordered Fe3O4(111) films using infrared ...
The interaction of CO with the Fe3O4(001)-(√2 × √2)R45° surface was studied using temperature-progra...
To explore the catalytic properties of cobalt oxide at the atomic level, we have studied the interac...
Nucleation, growth and thermal stability of Pt particles supported on well-ordered Fe3O4(111) thin f...
Cobalt oxide nanomaterials show high activity in several catalytic reactions thereby offering the po...
Spinel type Co3O4(100) is successfully grown on Ag(100) at ultrahigh vacuum conditions and its struc...
Adsorption energies, structures, and vibrational frequencies of CO on Fe(100) for several adsorption...
The adsorption of Ni, Co, Mn, Ti, and Zr at the (root 2 x root 2)R45 degrees-reconstructed Fe3O4(001...
The adsorption of water on ordered epitaxial FeO(111) and Fe3O4(111) films was investigated by ther...
The adsorption of water on ordered epitaxial FeO(111) and Fe3O4(111) films was investigated by therm...
We monitored adsorption of water on a well-defined Fe3O4(111) film surface at different temperatures...
We have studied adsorption of CO on Fe3O4(1 1 1) films grown on a Pt(1 1 1) substrate by temperature...
Abstract We have studied adsorption of CO on Fe 3 O 4 (1 1 1) films grown on a Pt(1 1 1) substrate b...
Although the (111) surface of Fe<sub>3</sub>O<sub>4</sub> (magnetite) has been investigated for more...
Although the (111) surface of Fe<sub>3</sub>O<sub>4</sub> (magnetite) has been investigated for more...
We monitored the adsorption of carbon dioxide (CO2) on well-ordered Fe3O4(111) films using infrared ...
The interaction of CO with the Fe3O4(001)-(√2 × √2)R45° surface was studied using temperature-progra...
To explore the catalytic properties of cobalt oxide at the atomic level, we have studied the interac...
Nucleation, growth and thermal stability of Pt particles supported on well-ordered Fe3O4(111) thin f...
Cobalt oxide nanomaterials show high activity in several catalytic reactions thereby offering the po...
Spinel type Co3O4(100) is successfully grown on Ag(100) at ultrahigh vacuum conditions and its struc...
Adsorption energies, structures, and vibrational frequencies of CO on Fe(100) for several adsorption...
The adsorption of Ni, Co, Mn, Ti, and Zr at the (root 2 x root 2)R45 degrees-reconstructed Fe3O4(001...
The adsorption of water on ordered epitaxial FeO(111) and Fe3O4(111) films was investigated by ther...
The adsorption of water on ordered epitaxial FeO(111) and Fe3O4(111) films was investigated by therm...
We monitored adsorption of water on a well-defined Fe3O4(111) film surface at different temperatures...