Two-dimensional (2D) FeO nanoislands with a well-controlled size, density, and surface structure have been grown on Pt(111) by a two-step preparation process, which consists of Fe deposition at low temperatures, such as 150 K, in an O-2 atmosphere and subsequent annealing at elevated temperatures in ultrahigh vacuum. The atomic structure, chemical composition, and electronic state of the formed FeO nanoislands were investigated by scanning tunneling microscopy (STM), X-ray photoelectron spectroscopy, and high-resolution electron energy loss spectroscopy. The formation of the metastable 2D Fe surface phase can be attributed to confinement effects at interfaces between nanostructured oxides and metal substrates, which originate from the stron...
This work presents a complete surface science investigation of a model system obtained depositing di...
The ultrathin oxide films of bilayer FeO and trilayer FeO2 superstructures on Pt(111) with periodici...
International audienceWe have investigated the magnetic and electronic properties of a FeO film grow...
The controlled fabrication of nanostructures has often used a substrate template to mediate and cont...
Monolayer Fe films on Pt(111) and their derived structures under different environments were investi...
Structural changes of FeOx nanostructures supported on Pt(111) and Pt foil with response to oxidatio...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
The evolution of a Fe/z\u2032-TiOx/Pt(111) model catalyst in ultrahigh vacuum, studied by advanced s...
Bimetallic catalysts are widely used in many heterogeneous catalytic processes. With rational design...
Active oxide nanolayers can be stabilized on noble metal surfaces through interface confinement effe...
Metastable oxide phases containing coordinatively unsaturated metal sites are highly active in many ...
Using high resolution and ambient pressure X-ray photoelectron spectroscopy we show that the catalyt...
Thesis (Ph. D.)--University of Hawaii at Manoa, 1995.Includes bibliographical references.Microfiche....
The growth and atomic structures of epitaxial iron-oxide films on Pt(111) were studied with scanning...
Understanding dynamic changes of catalytically active nanostructures under reaction conditions is a ...
This work presents a complete surface science investigation of a model system obtained depositing di...
The ultrathin oxide films of bilayer FeO and trilayer FeO2 superstructures on Pt(111) with periodici...
International audienceWe have investigated the magnetic and electronic properties of a FeO film grow...
The controlled fabrication of nanostructures has often used a substrate template to mediate and cont...
Monolayer Fe films on Pt(111) and their derived structures under different environments were investi...
Structural changes of FeOx nanostructures supported on Pt(111) and Pt foil with response to oxidatio...
Ultrathin transition metal oxide films exhibit unique physical and chemical properties not observed ...
The evolution of a Fe/z\u2032-TiOx/Pt(111) model catalyst in ultrahigh vacuum, studied by advanced s...
Bimetallic catalysts are widely used in many heterogeneous catalytic processes. With rational design...
Active oxide nanolayers can be stabilized on noble metal surfaces through interface confinement effe...
Metastable oxide phases containing coordinatively unsaturated metal sites are highly active in many ...
Using high resolution and ambient pressure X-ray photoelectron spectroscopy we show that the catalyt...
Thesis (Ph. D.)--University of Hawaii at Manoa, 1995.Includes bibliographical references.Microfiche....
The growth and atomic structures of epitaxial iron-oxide films on Pt(111) were studied with scanning...
Understanding dynamic changes of catalytically active nanostructures under reaction conditions is a ...
This work presents a complete surface science investigation of a model system obtained depositing di...
The ultrathin oxide films of bilayer FeO and trilayer FeO2 superstructures on Pt(111) with periodici...
International audienceWe have investigated the magnetic and electronic properties of a FeO film grow...