A screw dislocation in strontium titanate has been studied taking benefit of negative spherical aberration-imaging in a spherical aberration- corrected transmission electron microscope. The core structure of the dislocation is atomically resolved with respect to both cation and oxygen columns by the inclusion of the central core area. The dislocation core is characterized by a helical distortion of the lattice planes, which leads, in particular, to azimuthally elongated image dots associated with individual atomic columns close to the core centre. The atomic coordination in the dislocation core is identified and a high density of atom vacancies is revealed for a Ti-O column at the core
Thermo-mechanical, functional, as well as processing related properties of ceramics are typically ta...
Femtosecond laser ablation is used in applications which require low damage surface treatments, such...
We have studied three-dimensional (3D) configurations of dislocations in the β phase of a Ti–35mass...
The atomic structure of a SrTiO3 dislocation is revealed directly by phase-retrieval electron micros...
Dislocations in perovskite oxides have been found to have important impacts on their electronic and ...
Using a spherical aberration (Cs)-corrected scanning transmission electron microscopy (STEM) and ele...
A network of screw dislocations was artificially created in SrTiO3, and characterized by transmissio...
Using a spherical aberration (Cs)-corrected scanning transmission electron microscopy (STEM) and ele...
The core structures of glide-dissociated screw and edge 110{110} dislocations in strontium titanate ...
Accurate measurement of defect structures is hindered by complex atomic configuration and/or crystal...
Unveiling the identity, spatial configuration, and microscopic structure of point defects is one of ...
In the present work, the dislocation structure evolution around and underneath the spherical indenta...
The atomic structure of dislocation cores is decisive for the understanding of plasticity in crystal...
The nature of mechanically induced dislocations in SrTiO3 at low temperatures has been a disputed ma...
The dislocation configurations in SrTiO3 thin films grown epitaxially on LaAlO3 (100) substrates wer...
Thermo-mechanical, functional, as well as processing related properties of ceramics are typically ta...
Femtosecond laser ablation is used in applications which require low damage surface treatments, such...
We have studied three-dimensional (3D) configurations of dislocations in the β phase of a Ti–35mass...
The atomic structure of a SrTiO3 dislocation is revealed directly by phase-retrieval electron micros...
Dislocations in perovskite oxides have been found to have important impacts on their electronic and ...
Using a spherical aberration (Cs)-corrected scanning transmission electron microscopy (STEM) and ele...
A network of screw dislocations was artificially created in SrTiO3, and characterized by transmissio...
Using a spherical aberration (Cs)-corrected scanning transmission electron microscopy (STEM) and ele...
The core structures of glide-dissociated screw and edge 110{110} dislocations in strontium titanate ...
Accurate measurement of defect structures is hindered by complex atomic configuration and/or crystal...
Unveiling the identity, spatial configuration, and microscopic structure of point defects is one of ...
In the present work, the dislocation structure evolution around and underneath the spherical indenta...
The atomic structure of dislocation cores is decisive for the understanding of plasticity in crystal...
The nature of mechanically induced dislocations in SrTiO3 at low temperatures has been a disputed ma...
The dislocation configurations in SrTiO3 thin films grown epitaxially on LaAlO3 (100) substrates wer...
Thermo-mechanical, functional, as well as processing related properties of ceramics are typically ta...
Femtosecond laser ablation is used in applications which require low damage surface treatments, such...
We have studied three-dimensional (3D) configurations of dislocations in the β phase of a Ti–35mass...