Determining the three-dimensional (3D) crystallography of a material with subnanometer resolution is essential to understanding strain effects in epitaxial thin films. A scanning transmission electron microscopy imaging technique is demonstrated that visualizes the presence and strength of atomic movements leading to a period doubling of the unit cell along the beam direction, using the intensity in an extra Laue zone ring in the back focal plane recorded using a pixelated detector method. This method is used together with conventional atomic resolution imaging in the plane perpendicular to the beam direction to gain information about the 3D crystal structure in an epitaxial thin film of LaFeO3 sandwiched between a substrate of (111) SrTiO3...
Misfit dislocations form self‐organized nanoscale linear defects exhibiting their own distinct struc...
The electron occupancy of 3d-orbitals determines the properties of transition metal oxides. This can...
Abstract Oxygen vacancy migration and ordering in perovskite oxides enable manipulation of material...
©2002 American Institute of Physics. The electronic version of this article is the complete one and ...
Lattice-mismatched epitaxial films of LaSrMnO (LSMO) on LaAlO (001) substrates develop a crossed pat...
Strain engineering of functional properties in epitaxial thin films of strongly correlated oxides ex...
Ultrathin films (<30 nm) of Pr0.7Sr0.3MnO3Pr0.7Sr0.3MnO3 on LaAlO3LaAlO3 have been studied using ...
Transmission electron microscopy data used in the journal publication "Three-dimensional subnanoscal...
Reversible topotactic transitions between oxygen-vacancy-ordered structures in transition-metal oxid...
Reversible topotactic transitions between oxygen-vacancy-ordered structures in transition-metal oxid...
Resumen del trabajo presentado al 16th European Microscopy Congress, celebrado en Lyon (Francia) del...
NiO6-octahedral tilts in ultrathin LaNiO3 films were studied using position averaged convergent beam...
NiO6-octahedral tilts in ultrathin LaNiO3 films were studied using position averaged convergent beam...
Oxygen vacancy migration and ordering in perovskite oxides enable manipulation of material propertie...
Epitaxial oxide interfaces with broken translational symmetry have emerged as a central paradigm beh...
Misfit dislocations form self‐organized nanoscale linear defects exhibiting their own distinct struc...
The electron occupancy of 3d-orbitals determines the properties of transition metal oxides. This can...
Abstract Oxygen vacancy migration and ordering in perovskite oxides enable manipulation of material...
©2002 American Institute of Physics. The electronic version of this article is the complete one and ...
Lattice-mismatched epitaxial films of LaSrMnO (LSMO) on LaAlO (001) substrates develop a crossed pat...
Strain engineering of functional properties in epitaxial thin films of strongly correlated oxides ex...
Ultrathin films (<30 nm) of Pr0.7Sr0.3MnO3Pr0.7Sr0.3MnO3 on LaAlO3LaAlO3 have been studied using ...
Transmission electron microscopy data used in the journal publication "Three-dimensional subnanoscal...
Reversible topotactic transitions between oxygen-vacancy-ordered structures in transition-metal oxid...
Reversible topotactic transitions between oxygen-vacancy-ordered structures in transition-metal oxid...
Resumen del trabajo presentado al 16th European Microscopy Congress, celebrado en Lyon (Francia) del...
NiO6-octahedral tilts in ultrathin LaNiO3 films were studied using position averaged convergent beam...
NiO6-octahedral tilts in ultrathin LaNiO3 films were studied using position averaged convergent beam...
Oxygen vacancy migration and ordering in perovskite oxides enable manipulation of material propertie...
Epitaxial oxide interfaces with broken translational symmetry have emerged as a central paradigm beh...
Misfit dislocations form self‐organized nanoscale linear defects exhibiting their own distinct struc...
The electron occupancy of 3d-orbitals determines the properties of transition metal oxides. This can...
Abstract Oxygen vacancy migration and ordering in perovskite oxides enable manipulation of material...