Hydrogen embrittlement can cause a dramatic deterioration of the mechanical properties of high-strength metallic materials. Despite decades of experimental and modelling studies, the exact underlying mechanisms behind hydrogen embrittlement remain elusive. To unlock understanding of the mechanism and thereby help mitigate the influence of hydrogen and the associated embrittlement, it is essential to examine the interactions of hydrogen with structural defects such as grain boundaries, dislocations and stacking faults. Atom probe tomography (APT) can, in principle, analyse hydrogen located specifically at such microstructural features but faces strong challenges when it comes to charging specimens with hydrogen or deuterium. Here, we describ...
The scope of this thesis was to explore the applications of electron microscopy in the field of hydr...
This thesis demonstrates a comprehensive study on the interaction between hydrogen and plasticity by...
Observing solute hydrogen (H) in matter is a formidable challenge, yet, enabling quantitative imagin...
Hydrogen embrittlement can cause a dramatic deterioration of the mechanical properties of high-stren...
We investigate an electrolytic route for hydrogen charging of metals and its detection in Atom Probe...
This work demonstrates a new method to enable cryogenic atom probe tomography (cryo-APT) for the inv...
This work demonstrates a new method to enable cryogenic atom probe tomography (cryo-APT) for the inv...
Atom probe tomography (APT) is extensively used to measure the local chemistry of materials. Site-sp...
Hydrogen embrittlement (HE), which results in an unpredictable failure of metals, has been a major l...
Hydrogen embrittlement (HE), which results in an unpredictable failure of metals, has been a major l...
In this work we report on the atom probe tomography analysis of two metallic hydrides, formed by pre...
In this work we report on the atom probe tomography analysis of two metallic hydrides, formed by pre...
The design of atomic-scale microstructural traps to limit the diffusion of hydrogen is one key strat...
The design of atomic-scale microstructural traps to limit the diffusion of hydrogen is one key strat...
The recent interest in developing a hydrogen-based energy economy has put the need for hydrogen comp...
The scope of this thesis was to explore the applications of electron microscopy in the field of hydr...
This thesis demonstrates a comprehensive study on the interaction between hydrogen and plasticity by...
Observing solute hydrogen (H) in matter is a formidable challenge, yet, enabling quantitative imagin...
Hydrogen embrittlement can cause a dramatic deterioration of the mechanical properties of high-stren...
We investigate an electrolytic route for hydrogen charging of metals and its detection in Atom Probe...
This work demonstrates a new method to enable cryogenic atom probe tomography (cryo-APT) for the inv...
This work demonstrates a new method to enable cryogenic atom probe tomography (cryo-APT) for the inv...
Atom probe tomography (APT) is extensively used to measure the local chemistry of materials. Site-sp...
Hydrogen embrittlement (HE), which results in an unpredictable failure of metals, has been a major l...
Hydrogen embrittlement (HE), which results in an unpredictable failure of metals, has been a major l...
In this work we report on the atom probe tomography analysis of two metallic hydrides, formed by pre...
In this work we report on the atom probe tomography analysis of two metallic hydrides, formed by pre...
The design of atomic-scale microstructural traps to limit the diffusion of hydrogen is one key strat...
The design of atomic-scale microstructural traps to limit the diffusion of hydrogen is one key strat...
The recent interest in developing a hydrogen-based energy economy has put the need for hydrogen comp...
The scope of this thesis was to explore the applications of electron microscopy in the field of hydr...
This thesis demonstrates a comprehensive study on the interaction between hydrogen and plasticity by...
Observing solute hydrogen (H) in matter is a formidable challenge, yet, enabling quantitative imagin...