Using high-resolution imaging at negative spherical aberration of the objective lens in an aberration-corrected transmission electron microscope, we measure the concentration of oxygen in Sigma3[111] twin boundaries in BaTiO3 thin films at atomic resolution. On average, 68% of the boundary oxygen sites are occupied, and the others are left vacant. The modified Ti2O9 group unit thus formed reduces the grain boundary energy and provides a way of accommodating oxygen vacancies occurring in oxygen-deficient material by the formation of a nanotwin lamellae structure. The atomically resolved measurement technique offers the potential for studies on oxide materials in which the electronic properties sensitively depend on the local oxygen content
Atom probe tomography, APT, is the only microstructural method that can routinely analyse and positi...
Atomic-scale defects strongly influence the electrical and optical properties of materials, and thei...
Oxygen defects govern the behavior of a range of materials spanning catalysis, quantum computing, an...
Using an imaging mode based on the adjustment of a negative value of the spherical-aberration coeffi...
Transition metal oxides constitute one of the most fruitful sources of materials with continuously i...
The atomic structure of a SrTiO3 dislocation is revealed directly by phase-retrieval electron micros...
In this study, we present nano-scale investigations of point defect dynamics in perovskite oxides by...
We present atomic-scale imaging of oxygen columns and show quantitative analysis on the occupancy of...
The chemical analysis on the atomic scale in a scanning transmission electron microscope bears a num...
We investigate the metallic surface state in ultrathin films of BaTiO3 by angle-resolved photoemissi...
Quantitative composition measurements of metal-oxides by atom probe tomography (APT) face the proble...
Atom probe tomography (APT) is used to investigate the composition of oxygen rich nanoparticles with...
Vacancy dynamics and ordering underpin the electrochemical functionality of complex oxides and stron...
On the basis of a state-of-the-art aberration-corrected transmission electron microscope, the spheri...
The advent of aberration correctors for electron optical lenses at the end of 20th century has broug...
Atom probe tomography, APT, is the only microstructural method that can routinely analyse and positi...
Atomic-scale defects strongly influence the electrical and optical properties of materials, and thei...
Oxygen defects govern the behavior of a range of materials spanning catalysis, quantum computing, an...
Using an imaging mode based on the adjustment of a negative value of the spherical-aberration coeffi...
Transition metal oxides constitute one of the most fruitful sources of materials with continuously i...
The atomic structure of a SrTiO3 dislocation is revealed directly by phase-retrieval electron micros...
In this study, we present nano-scale investigations of point defect dynamics in perovskite oxides by...
We present atomic-scale imaging of oxygen columns and show quantitative analysis on the occupancy of...
The chemical analysis on the atomic scale in a scanning transmission electron microscope bears a num...
We investigate the metallic surface state in ultrathin films of BaTiO3 by angle-resolved photoemissi...
Quantitative composition measurements of metal-oxides by atom probe tomography (APT) face the proble...
Atom probe tomography (APT) is used to investigate the composition of oxygen rich nanoparticles with...
Vacancy dynamics and ordering underpin the electrochemical functionality of complex oxides and stron...
On the basis of a state-of-the-art aberration-corrected transmission electron microscope, the spheri...
The advent of aberration correctors for electron optical lenses at the end of 20th century has broug...
Atom probe tomography, APT, is the only microstructural method that can routinely analyse and positi...
Atomic-scale defects strongly influence the electrical and optical properties of materials, and thei...
Oxygen defects govern the behavior of a range of materials spanning catalysis, quantum computing, an...