Visualizing plating-induced cracking in lithium-anode solid-electrolyte cells
Lithium dendrite (filament) propagation through ceramic electrolytes, leading to short circuits at high rates of charge, is one of the greatest barriers to realizing high-energy-density all-solid-state lithium-anode batteries. Utilizing in situ X-ray computed tomography coupled with spatially mapped...
المؤلفون الرئيسيون: | Ning, Z, Spencer Jolly, D, Li, G, De Meyere, R, Pu, SD, Chen, Y, Kasemchainan, J, Ihli, J, Gong, C, Liu, B, Melvin, DLR, Bonnin, A, Magdysyuk, O, Adamson, P, Hartley, GO, Monroe, CW, Marrow, TJ, Bruce, PG |
---|---|
التنسيق: | Journal article |
اللغة: | English |
منشور في: |
Springer Nature
2021
|
مواد مشابهة
-
Temperature dependence of lithium anode voiding in argyrodite solid-state batteries
حسب: Spencer Jolly, D, وآخرون
منشور في: (2021) -
Deflecting lithium dendritic cracks in multi-layered solid electrolytes
حسب: Hu, B, وآخرون
منشور في: (2024) -
Critical stripping current leads to dendrite formation on plating in lithium anode solid electrolyte cells
حسب: Kasemchainan, J, وآخرون
منشور في: (2019) -
Interfaces between ceramic and polymer electrolytes: a comparison of oxide and sulfide solid electrolytes for hybrid solid-state batteries
حسب: Spencer Jolly, D, وآخرون
منشور في: (2022) -
Influence of contouring the lithium metal/solid electrolyte interface on the critical current for dendrites
حسب: Zhang, S, وآخرون
منشور في: (2024)