The atomic structure of a SrTiO3 dislocation is revealed directly by phase-retrieval electron microscopy. In particular, atomic columns of light oxygen are observed simultaneously with the columns of considerably heavier Sr and Ti. A distinct structural modification of the oxygen octahedra at the dislocation core as well as a significant nonstoichiometry, including a deficiency of oxygen, are observed. Deviations from the bulk chemical concentration are quantified column by column by means of structure modeling and quantum-mechanical simulations of the electron scattering process
The effect of dislocations on the chemical, electrical and transport properties in oxide materials i...
Using a spherical aberration (Cs)-corrected scanning transmission electron microscopy (STEM) and ele...
New elements of a symmetric [001] 67.4\degres SrTiO$_3$ near $\Sigma$ 13 tilt grain boundary are ide...
A screw dislocation in strontium titanate has been studied taking benefit of negative spherical aber...
A network of screw dislocations was artificially created in SrTiO3, and characterized by transmissio...
Dislocations in perovskite oxides have been found to have important impacts on their electronic and ...
The transport properties of edge dislocations comprising a symmetrical 6° [001] tilt grain boundary ...
Using an imaging mode based on the adjustment of a negative value of the spherical-aberration coeffi...
The c(6x2) is a reconstruction of the SrTiO3(001) surface that is formed between 1050 and 1100 degre...
Unveiling the identity, spatial configuration, and microscopic structure of point defects is one of ...
Using high-resolution imaging at negative spherical aberration of the objective lens in an aberratio...
Atomic-scale defects strongly influence the electrical and optical properties of materials, and thei...
The core structures of glide-dissociated screw and edge 110{110} dislocations in strontium titanate ...
The atomic surface structure of single terminated SrTiO3(0 0 1) (1 × 1) is investigated employing su...
Studies on dislocations in prototypic binary and ternary oxides (here TiO2 and SrTiO3) using modern ...
The effect of dislocations on the chemical, electrical and transport properties in oxide materials i...
Using a spherical aberration (Cs)-corrected scanning transmission electron microscopy (STEM) and ele...
New elements of a symmetric [001] 67.4\degres SrTiO$_3$ near $\Sigma$ 13 tilt grain boundary are ide...
A screw dislocation in strontium titanate has been studied taking benefit of negative spherical aber...
A network of screw dislocations was artificially created in SrTiO3, and characterized by transmissio...
Dislocations in perovskite oxides have been found to have important impacts on their electronic and ...
The transport properties of edge dislocations comprising a symmetrical 6° [001] tilt grain boundary ...
Using an imaging mode based on the adjustment of a negative value of the spherical-aberration coeffi...
The c(6x2) is a reconstruction of the SrTiO3(001) surface that is formed between 1050 and 1100 degre...
Unveiling the identity, spatial configuration, and microscopic structure of point defects is one of ...
Using high-resolution imaging at negative spherical aberration of the objective lens in an aberratio...
Atomic-scale defects strongly influence the electrical and optical properties of materials, and thei...
The core structures of glide-dissociated screw and edge 110{110} dislocations in strontium titanate ...
The atomic surface structure of single terminated SrTiO3(0 0 1) (1 × 1) is investigated employing su...
Studies on dislocations in prototypic binary and ternary oxides (here TiO2 and SrTiO3) using modern ...
The effect of dislocations on the chemical, electrical and transport properties in oxide materials i...
Using a spherical aberration (Cs)-corrected scanning transmission electron microscopy (STEM) and ele...
New elements of a symmetric [001] 67.4\degres SrTiO$_3$ near $\Sigma$ 13 tilt grain boundary are ide...