International audienceAtom probe tomography (APT) is a 3D analysis technique that offers unique chemical accuracy and sensitivity with sub-nanometer spatial resolution. There is an increasing interest in the application of APT to complex oxides materials, giving new insight into the relation between local variations in chemical composition and emergent physical properties. However, in contrast to the field of metallurgy, where APT is routinely applied to study materials at the atomic level, complex oxides and their specific field evaporation mechanisms are much less explored. Here, we perform APT measurements on the hexagonal manganite ErMnO 3 and systematically study the effect of different experimental parameters on the measured compositi...
Quantitative composition measurements of metal-oxides by atom probe tomography (APT) face the proble...
Whilst atom probe tomography (APT) is a powerful technique with the capacity to gather information c...
Atom probe tomography (APT) is an atomic scale materials characterisation technique. Utilising high-...
International audienceAtom probe tomography (APT) is a 3D analysis technique that offers unique chem...
Oxide-supported metal nanoparticles are widely used in heterogeneous catalysis. The increasingly det...
International audienceAtom probe tomography (APT) has been successfully used in materials science fo...
A small percentage of dopant atoms can completely change the physical properties of the host materia...
International audienceIn the last decade, atom probe tomography has become a powerful tool to invest...
Atom probe tomography, APT, is the only microstructural method that can routinely analyse and positi...
Atom probe tomography (APT) is used to investigate the composition of oxygen rich nanoparticles with...
International audienceAtom probe tomography (APT) is the only approach able to map out the 3D distri...
The physical properties of semiconductors are controlled by chemical doping. In oxide semiconductors...
International audienceThe measurement of the composition of ε-Ga 2 O 3 and the quantification of Sn ...
Quantitative composition measurements of metal-oxides by atom probe tomography (APT) face the proble...
Whilst atom probe tomography (APT) is a powerful technique with the capacity to gather information c...
Atom probe tomography (APT) is an atomic scale materials characterisation technique. Utilising high-...
International audienceAtom probe tomography (APT) is a 3D analysis technique that offers unique chem...
Oxide-supported metal nanoparticles are widely used in heterogeneous catalysis. The increasingly det...
International audienceAtom probe tomography (APT) has been successfully used in materials science fo...
A small percentage of dopant atoms can completely change the physical properties of the host materia...
International audienceIn the last decade, atom probe tomography has become a powerful tool to invest...
Atom probe tomography, APT, is the only microstructural method that can routinely analyse and positi...
Atom probe tomography (APT) is used to investigate the composition of oxygen rich nanoparticles with...
International audienceAtom probe tomography (APT) is the only approach able to map out the 3D distri...
The physical properties of semiconductors are controlled by chemical doping. In oxide semiconductors...
International audienceThe measurement of the composition of ε-Ga 2 O 3 and the quantification of Sn ...
Quantitative composition measurements of metal-oxides by atom probe tomography (APT) face the proble...
Whilst atom probe tomography (APT) is a powerful technique with the capacity to gather information c...
Atom probe tomography (APT) is an atomic scale materials characterisation technique. Utilising high-...