The ability to track electrode degradation, both spatially and temporally, is fundamental to understand performance loss during operation of lithium batteries. X ray computed tomography can be used to follow structural and morphological changes in electrodes; however, the direct detection of electrochemical processes related to metallic lithium is difficult due to the low sensitivity to the element. In this work, 4 dimensional neutron computed tomography, which shows high contrast for lithium, is used to directly quantify the lithium diffusion process in spirally wound Li SOCl2 primary cells. The neutron dataset enables the quantification of the lithium transport from the anode and the accumulation inside the SOCl2 cathode to be locall...
International audienceMost of the post-Lithium-ion (Li-ion) devices, such as Li–sulfur, Li–O2, or al...
The sustainable energy transition relies on energy storage technology. Crucial to meet the ever incr...
International audienceX-ray and neutron imaging are widely employed for battery materials, thanks to...
The ability to track electrode degradation, both spatially and temporally, is fundamental to underst...
The ability to track electrode degradation, both spatially and temporally, is fundamental to underst...
The ability to track electrode degradation, both spatially and temporally, is fundamental to underst...
The understanding of dynamic processes in Li-metal batteries is an important consideration to enable...
The understanding of dynamic processes in Li metal batteries is an important consideration to enable...
The temporally and spatially resolved tracking of lithium intercalation and electrode degradation pr...
The temporally and spatially resolved tracking of lithium intercalation and electrode degradation p...
Batteries and fuel cells have already shown high potential across a diverse range of applications su...
Advanced batteries are critical to achieving net zero and are proposed within decarbonization strate...
The understanding of dynamic processes in Li-metal batteries is an important consideration to enable...
International audienceMost of the post-Lithium-ion (Li-ion) devices, such as Li–sulfur, Li–O2, or al...
The sustainable energy transition relies on energy storage technology. Crucial to meet the ever incr...
International audienceX-ray and neutron imaging are widely employed for battery materials, thanks to...
The ability to track electrode degradation, both spatially and temporally, is fundamental to underst...
The ability to track electrode degradation, both spatially and temporally, is fundamental to underst...
The ability to track electrode degradation, both spatially and temporally, is fundamental to underst...
The understanding of dynamic processes in Li-metal batteries is an important consideration to enable...
The understanding of dynamic processes in Li metal batteries is an important consideration to enable...
The temporally and spatially resolved tracking of lithium intercalation and electrode degradation pr...
The temporally and spatially resolved tracking of lithium intercalation and electrode degradation p...
Batteries and fuel cells have already shown high potential across a diverse range of applications su...
Advanced batteries are critical to achieving net zero and are proposed within decarbonization strate...
The understanding of dynamic processes in Li-metal batteries is an important consideration to enable...
International audienceMost of the post-Lithium-ion (Li-ion) devices, such as Li–sulfur, Li–O2, or al...
The sustainable energy transition relies on energy storage technology. Crucial to meet the ever incr...
International audienceX-ray and neutron imaging are widely employed for battery materials, thanks to...