Hydrogen as a fuel can be stored safely with high volumetric density in metals. It can, however, also be detrimental to metals, causing embrittlement. Understanding fundamental behavior of hydrogen at the atomic scale is key to improve the properties of metal-metal hydride systems. However, currently, there is no robust technique capable of visualizing hydrogen atoms. Here, we demonstrate that hydrogen atoms can be imaged unprecedentedly with integrated differential phase contrast, a recently developed technique performed in a scanning transmission electron microscope. Images of the titanium-titanium monohydride interface reveal stability of the hydride phase, originating from the interplay between compressive stress and interfacial coheren...
Hydrogen embrittlement can cause a dramatic deterioration of the mechanical properties of high-stren...
In this work we report on the atom probe tomography analysis of two metallic hydrides, formed by pre...
International audienceThe hydrogen energy transition is highly probable, because hydrogen is the mos...
Hydrogen as a fuel can be stored safely with high volumetric density in metals. It can, however, als...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
The design of atomic-scale microstructural traps to limit the diffusion of hydrogen is one key strat...
Ti and Ti‐based alloys have high affinity for hydrogen and can easily adsorb large amounts of hydrog...
Hydrogen spillover is the phenomenon where a hydrogen atom, generated from the dissociative chemisor...
Hydrogen embrittlement can cause a dramatic deterioration of the mechanical properties of high-stren...
In this work we report on the atom probe tomography analysis of two metallic hydrides, formed by pre...
Hydrogen embrittlement (HE), which results in an unpredictable failure of metals, has been a major l...
Hydrogen embrittlement can cause a dramatic deterioration of the mechanical properties of high-stren...
In this work we report on the atom probe tomography analysis of two metallic hydrides, formed by pre...
International audienceThe hydrogen energy transition is highly probable, because hydrogen is the mos...
Hydrogen as a fuel can be stored safely with high volumetric density in metals. It can, however, als...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
Hydrogen as a prospective fuel can be stored safely with high volumetric density in metals. It can, ...
The design of atomic-scale microstructural traps to limit the diffusion of hydrogen is one key strat...
Ti and Ti‐based alloys have high affinity for hydrogen and can easily adsorb large amounts of hydrog...
Hydrogen spillover is the phenomenon where a hydrogen atom, generated from the dissociative chemisor...
Hydrogen embrittlement can cause a dramatic deterioration of the mechanical properties of high-stren...
In this work we report on the atom probe tomography analysis of two metallic hydrides, formed by pre...
Hydrogen embrittlement (HE), which results in an unpredictable failure of metals, has been a major l...
Hydrogen embrittlement can cause a dramatic deterioration of the mechanical properties of high-stren...
In this work we report on the atom probe tomography analysis of two metallic hydrides, formed by pre...
International audienceThe hydrogen energy transition is highly probable, because hydrogen is the mos...