Herein X-ray tomography of cycled symmetric sodium cells with Na-β-alumina is used to validate the success of a protective layer. X-ray imaging after cell failure reveals that the solid electrolyte unexpectedly broke apart alongside a crack. The crack might have acted as the nucleation site for sodium dendrite growth, which ended in short-circuiting and cell failure.<br
International audienceSolid block polymer electrolytes are promising candidates for the development ...
Solid state batteries have attracted extensive attention, but the lithium penetration through the so...
In this work, we investigated the interface between the sodium anode and the sulfide-based solid ele...
All solid-state batteries (ASSBs) with ceramic electrolytes and alkali metal anodes are a potential ...
Rechargeable batteries have become a staple of modern society, driving the development and expansion...
The degradation mechanism in a sodium cell of a layered Na0.48Al0.03Co0.18Ni0.18Mn0.47O2 (NCAM) cath...
From non destructive and cross sectional visualization by synchrotron X ray tomography, we suggest a...
Clarification of the breakdown process occurring during charge transfer in sodium beta alumina solid...
From non-destructive and cross-sectional visualization by synchrotron X-ray tomography, we suggest a...
The implementation of solid-state electrolytes (SSEs) into lithium-ion batteries shows much promise ...
equilibrium in sodium-ion batteries by in situ hard X-ray nanotomography Jiajun Wang1, Christopher E...
Solid block polymer electrolytes are promising candidates for the development of high energy density...
Lithium dendrite (filament) propagation through ceramic electrolytes, leading to short circuits at h...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
To improve lithium and sodium ion battery technology, it is imperative to understand how the propert...
International audienceSolid block polymer electrolytes are promising candidates for the development ...
Solid state batteries have attracted extensive attention, but the lithium penetration through the so...
In this work, we investigated the interface between the sodium anode and the sulfide-based solid ele...
All solid-state batteries (ASSBs) with ceramic electrolytes and alkali metal anodes are a potential ...
Rechargeable batteries have become a staple of modern society, driving the development and expansion...
The degradation mechanism in a sodium cell of a layered Na0.48Al0.03Co0.18Ni0.18Mn0.47O2 (NCAM) cath...
From non destructive and cross sectional visualization by synchrotron X ray tomography, we suggest a...
Clarification of the breakdown process occurring during charge transfer in sodium beta alumina solid...
From non-destructive and cross-sectional visualization by synchrotron X-ray tomography, we suggest a...
The implementation of solid-state electrolytes (SSEs) into lithium-ion batteries shows much promise ...
equilibrium in sodium-ion batteries by in situ hard X-ray nanotomography Jiajun Wang1, Christopher E...
Solid block polymer electrolytes are promising candidates for the development of high energy density...
Lithium dendrite (filament) propagation through ceramic electrolytes, leading to short circuits at h...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Cata...
To improve lithium and sodium ion battery technology, it is imperative to understand how the propert...
International audienceSolid block polymer electrolytes are promising candidates for the development ...
Solid state batteries have attracted extensive attention, but the lithium penetration through the so...
In this work, we investigated the interface between the sodium anode and the sulfide-based solid ele...