A novel approach, which is based on the analysis of sequences of images recorded using energy-filtered transmission electron microscopy and can be used to assess the reaction of a solid with a gas at elevated temperature, is illustrated for the reduction of a NiO/ceramic solid oxide fuel cell anode in 1.3 mbar of H-2. Three-window elemental maps and jump-ratio images of the O K edge and total inelastic mean free path images are recorded as a function of temperature and used to provide local and quantitative information about the reaction kinetics and the volume changes that result from the reaction. Under certain assumptions, the speed of progression of the reaction front in all three dimensions is obtained, thereby providing a three-dimens...
Solid Oxide Fuel Cells (SOFC) are an efficient energy technology for converting different types of f...
Recently, two new phenomena linking stress field and reduction rates in anode supported solid oxide ...
AbstractSolid oxide fuel cells remain at the forefront of research into electrochemical energy conve...
A novel approach, which is based on the analysis of sequences of images recorded using energy-filter...
Electron microscopy offers a wide range of techniques to study materials. Environmental Scanning Ele...
SSCI-VIDE+MEME+TEPInternational audienceSolid oxide fuel cells (or SOFC) are a class of solid-state ...
Energy-filtered transmission electron microscopy images are acquired during the reduction of a NiO-Y...
This article reports on in situ macroscopic scale imaging of NiO-YSZ (YSZ is yttria-stabilized zirco...
Energy-filtered transmission electron microscopy images are acquired during the reduction of a NiO–Y...
Solid oxide fuel cells (SOFCs) are promising energy conversion devices, but their economic viability...
In situ reduction of nickel oxide (NiO) particles is performed under 1.3mbar of hydrogen gas (H2) in...
Environmental transmission electron microscopy was used to characterize in situ the reduction and ox...
Solid oxide fuel cells (SOFCs) are promising candidates for use in alternative energy technologies. ...
In situ monitoring of events in transmission electron microscopy provides information on how materia...
Environmental transmission electron microscopy was used to characterize in situ the reduction and ox...
Solid Oxide Fuel Cells (SOFC) are an efficient energy technology for converting different types of f...
Recently, two new phenomena linking stress field and reduction rates in anode supported solid oxide ...
AbstractSolid oxide fuel cells remain at the forefront of research into electrochemical energy conve...
A novel approach, which is based on the analysis of sequences of images recorded using energy-filter...
Electron microscopy offers a wide range of techniques to study materials. Environmental Scanning Ele...
SSCI-VIDE+MEME+TEPInternational audienceSolid oxide fuel cells (or SOFC) are a class of solid-state ...
Energy-filtered transmission electron microscopy images are acquired during the reduction of a NiO-Y...
This article reports on in situ macroscopic scale imaging of NiO-YSZ (YSZ is yttria-stabilized zirco...
Energy-filtered transmission electron microscopy images are acquired during the reduction of a NiO–Y...
Solid oxide fuel cells (SOFCs) are promising energy conversion devices, but their economic viability...
In situ reduction of nickel oxide (NiO) particles is performed under 1.3mbar of hydrogen gas (H2) in...
Environmental transmission electron microscopy was used to characterize in situ the reduction and ox...
Solid oxide fuel cells (SOFCs) are promising candidates for use in alternative energy technologies. ...
In situ monitoring of events in transmission electron microscopy provides information on how materia...
Environmental transmission electron microscopy was used to characterize in situ the reduction and ox...
Solid Oxide Fuel Cells (SOFC) are an efficient energy technology for converting different types of f...
Recently, two new phenomena linking stress field and reduction rates in anode supported solid oxide ...
AbstractSolid oxide fuel cells remain at the forefront of research into electrochemical energy conve...