'Real life' energy-related materials such as solid-state hydrogen storage compounds or components of electrochemical cells are usually polycrystalline, poorly crystallized, highly reactive and dynamic systems. Powder diffraction at modern high brilliance X-ray sources is the most useful tool to investigate such systems because it is easy, fast and extremely versatile with respect to measurement conditions as well as in situ setups. However, it is in the nature of these systems that they undergo processes that cannot be investigated by diffraction alone. The central role in hydrogen storage materials is played by hydrogen itself, the worst X-ray scatterer in the periodic system. Gas release, the purpose of a hydrogen storage material, is not...
The potential of neutron powder diffraction in the location of hydrogen atoms in molecular materials...
The thrust of this project was to investigate the structures of important materials with potential a...
Complex hydrides are very promising hydrogen-storage materials, due to their high gravimetric and vo...
This chapter is the 6th of the book "Structural Characterization Techniques: Advances and Applicatio...
Synchrotron radiation is an advanced collimated light source with high intensity. It has particular ...
The world today is facing increasing energy demands and a simultaneous demand for cleaner and more e...
In this article, the capabilities of soft and hard X-ray techniques, including X-ray absorption (XAS...
Diffraction-based methods offer unique advantages for elucidating the pathways by which materials ab...
Hydrogen forms more compounds than any other element in the Periodic Table, yet methods for accurate...
Hydrogen forms more compounds than any other element in the Periodic Table, yet methods for accurate...
The methods of structural characterization of metal and chemical hydrides are reviewed. The existing...
Powder diffraction plays a central role in the characterization of light metal tetrahydroborates (bo...
A high-pressure X-ray diffraction (XRD) cell has been designed which allowed us to study simultaneou...
Materials for reversible hydrogen storage in the solid state constitute a subject of intensive resea...
Complex hydrides are very promising candidates for future light-weight solid state hydrogen storage ...
The potential of neutron powder diffraction in the location of hydrogen atoms in molecular materials...
The thrust of this project was to investigate the structures of important materials with potential a...
Complex hydrides are very promising hydrogen-storage materials, due to their high gravimetric and vo...
This chapter is the 6th of the book "Structural Characterization Techniques: Advances and Applicatio...
Synchrotron radiation is an advanced collimated light source with high intensity. It has particular ...
The world today is facing increasing energy demands and a simultaneous demand for cleaner and more e...
In this article, the capabilities of soft and hard X-ray techniques, including X-ray absorption (XAS...
Diffraction-based methods offer unique advantages for elucidating the pathways by which materials ab...
Hydrogen forms more compounds than any other element in the Periodic Table, yet methods for accurate...
Hydrogen forms more compounds than any other element in the Periodic Table, yet methods for accurate...
The methods of structural characterization of metal and chemical hydrides are reviewed. The existing...
Powder diffraction plays a central role in the characterization of light metal tetrahydroborates (bo...
A high-pressure X-ray diffraction (XRD) cell has been designed which allowed us to study simultaneou...
Materials for reversible hydrogen storage in the solid state constitute a subject of intensive resea...
Complex hydrides are very promising candidates for future light-weight solid state hydrogen storage ...
The potential of neutron powder diffraction in the location of hydrogen atoms in molecular materials...
The thrust of this project was to investigate the structures of important materials with potential a...
Complex hydrides are very promising hydrogen-storage materials, due to their high gravimetric and vo...