Iron is a promising, earth-abundant material for future energy applications. In this study, we use a neutron diffractometer to investigate the properties of an iron electrode in an alkaline environment. As neutrons penetrate deeply into materials, neutron scattering gives us a unique insight into what is happening inside the electrode. We made our measurements while the electrode was charging or discharging. Our key questions are: Which phases occur for the first and second discharge plateaus? And why are iron electrodes less responsive at higher discharge rates? We conclude that metallic iron and iron hydroxide form the redox pair for the first discharge plateau. For the second discharge plateau, we found a phase similar to feroxyhyte but ...
We investigated hydrogen embrittlement and blistering in electrochemically hydrogen charged technica...
Iron-air batteries hold the potential to be a key technology for energy storage, thanks to their ene...
In-situ techniques proved to be exceptionally useful tools to understand electrode materials for Li-...
Iron is a promising, earth-abundant material for future energy applications. In this study, we use a...
The battolyser concept is based on an old fashioned nickel iron battery, consisting of a positive ni...
The redox discharge process of the nickel oxihydroxide electrode (NOE) were followed by in situ neut...
A novel neutron diffraction cell has been constructed to allow in-situ studies of the structural cha...
AbstractA novel neutron diffraction cell has been constructed to allow in-situ studies of the struct...
The redox processes occurring at the nickel oxyhydroxide electrodes were followed by in situ neutron...
Batteries with air electrodes are gaining interest as Energy Storage Systems (ESSs) for Electrical V...
The reduction of New Zealand titanomagnetite ironsand in a dilute hydrogen-nitrogen gas mixture was ...
The ability to directly track the charge carrier in a battery as it inserts/extracts from an electro...
This paper presents a preliminary structural and interfacial study of the iron chalcogenide glass [i...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
Recent experiments provided evidence of piezonuclear reactions occurring in condensed matter during ...
We investigated hydrogen embrittlement and blistering in electrochemically hydrogen charged technica...
Iron-air batteries hold the potential to be a key technology for energy storage, thanks to their ene...
In-situ techniques proved to be exceptionally useful tools to understand electrode materials for Li-...
Iron is a promising, earth-abundant material for future energy applications. In this study, we use a...
The battolyser concept is based on an old fashioned nickel iron battery, consisting of a positive ni...
The redox discharge process of the nickel oxihydroxide electrode (NOE) were followed by in situ neut...
A novel neutron diffraction cell has been constructed to allow in-situ studies of the structural cha...
AbstractA novel neutron diffraction cell has been constructed to allow in-situ studies of the struct...
The redox processes occurring at the nickel oxyhydroxide electrodes were followed by in situ neutron...
Batteries with air electrodes are gaining interest as Energy Storage Systems (ESSs) for Electrical V...
The reduction of New Zealand titanomagnetite ironsand in a dilute hydrogen-nitrogen gas mixture was ...
The ability to directly track the charge carrier in a battery as it inserts/extracts from an electro...
This paper presents a preliminary structural and interfacial study of the iron chalcogenide glass [i...
In operando diffraction methods are widely employed to qualitatively follow the reaction progression...
Recent experiments provided evidence of piezonuclear reactions occurring in condensed matter during ...
We investigated hydrogen embrittlement and blistering in electrochemically hydrogen charged technica...
Iron-air batteries hold the potential to be a key technology for energy storage, thanks to their ene...
In-situ techniques proved to be exceptionally useful tools to understand electrode materials for Li-...