Iron Oxide Surfaces
arXiv:1602.06774 · doi:10.1016/j.surfrep.2016.02.001
Abstract
The surface science of iron oxides is comprehensively reviewed. For the full abstract please see pdf.
165 pages, 105 figures, 616 references
References in corpus (17)
- Oxide spintronics
- Subsurface Cation Vacancy Stabilization of the Magnetite (001) Surface
- Ordered Array of Single Adatoms with Remarkable Thermal Stability: Au/Fe3O4(001)
- Ordered Array of Single Au Adatoms with Remarkable Thermal Stability: Au/Fe3O4(001)
- Partial dissociation of water on FeO(001): adsorbate induced charge and orbital order
- An Atomic-Scale View of CO and H2 Oxidation on a Pt-Fe3O4 Model Catalyst
- High-energy photoemission on Fe3O4: Small polaron physics and the Verwey transition
- Hydroxylation of Rutile TiO (110) Surface Enhancing Its Reducing Power for Photocatalysis
- Two-dimensional manganese oxide nanolayers on Pd(100): Surface phase diagram
- Structure and magnetism in ultrathin iron oxides characterized by low energy electron microscopy
- Room temperature study of a strain-induced electronic superstructure on a magnetite (111) surface
- Temperature-Dependence of Magnetically-Active Charge Excitations in Magnetite across the Verwey Transition
- Strain-induced Defect Superstructure on the SrTiO3(110) Surface
- All Oxide Ferromagnet/Semiconductor Epitaxial Heterostructures
- Spin moment over 10-300 K and delocalization of magnetic electrons above the Verwey transition in magnetite
- Phonons in ultrathin oxide films - 2D to 3D transition in FeO on Pt(111)
- Fe3O4(110)-(1x3) Revisited: Periodic (111) Nano-Facets
Cited by in corpus (29)
- Unravelling CO adsorption on model single-atom catalysts
- Single-Atom Catalysis: Insights from Model Systems
- Large spin Hall magnetoresistance in antiferromagnetic α-Fe2O3/Pt heterostructures
- A Multi-Technique Study of Adsorption on Magnetite
- Accurate absolute core-electron binding energies of molecules, solids and surfaces from first-principles calculations
- The role of surface defects in the adsorption of methanol on Fe3O4(001)
- CO oxidation by Pt2/Fe3O4: metastable dimer and support configurations facilitate lattice oxygen extraction
- Cluster Catalysis with Lattice Oxygen: Tracing Oxygen Transport from a Magnetite(001) Support onto Small Pt Clusters
- An efficient way to model complex magnetite: assessment of SCC-DFTB against DFT
- Single Rh adatoms stabilized on α-Fe2O3(1-102) by co-adsorbed water
- Adsorption of CO on the Fe3O4(001) Surface
- Importance of the catalytic effect of the substrate in the functionality of lubricant additives: the case of MoDTC
- Surface Reduction State Determines Stabilization and Incorporation of Rh on α-Fe2O3(1-102)
- Influence of Local Defects on the Dynamics of O-H Bond Breaking and Formation on a Magnetite Surface
- Analogy between the magnetic dipole moment at the surface of a magnetoelectric and the electric charge at the surface of a ferroelectric
- Oxidation State Dynamics and Emerging Patterns in Magnetite
- Identification of two-dimensional termination of hematite surface
- Standardization of chemically selective atomic force microscopy for metal-oxide surfaces
- Parametrization of the Fe-Owater cross-interaction for a more accurate Fe3O4/water interface model and its application to a spherical Fe3O4 nanoparticle of realistic size
- Cation- and lattice-site-selective magnetic depth profiles of ultrathin (001) films
- Oxygen-Terminated (1x1) Reconstruction of Reduced Magnetite FeO(111)
- Growth and characterization of ultrathin cobalt ferrite films on Pt(111)
- Mechanism of spin ordering in FeO nanoparticles by surface coating with organic acids
- Digging its own Site: Linear Coordination Stabilizes a Pt1/Fe2O3 Single-Atom Catalyst
- Time-resolved diffraction and photoelectron spectroscopy investigation of the reactive molecular beam epitaxy of ultrathin films
- Atomic Structure of Hematite (-FeO) Nanocube Surface; Synchrotron X-ray Diffraction Study
- Atomistic modeling of functionalized magnetite surfaces with oxidation states
- Influence of microstructure and atomic-scale chemistry on iron ore reduction with hydrogen at 700°C
- Bayesian learning of adatom interactions from atomically-resolved imaging data