Models based on linear elasticity suggest that a solid electrolyte with a high shear modulus will suppress “dendrite” formation in batteries that use metallic lithium as the negative electrode. Nevertheless, recent experiments find that lithium can penetrate stiff solid electrolytes through microstructural features, such as grain boundaries. This failure mode emerges even in cases where the electrolyte has an average shear modulus that is an order of magnitude larger than that of Li. Adopting the solid-electrolyte Li7La3Zr2O12 (LLZO) as a prototype, here we demonstrate that significant softening in elastic properties occurs in nanoscale regions near grain boundaries. Molecular dynamics simulations performed on tilt and twist boundaries reve...
Under electrochemical cycling, stress intensification and relaxation within small volumes at the lit...
All-solid-state lithium (Li) batteries provide a promising pathway toward high energy and power dens...
Mechanical degradation of lithium-ion battery (LIB) electrodes has been correlated with capacity fad...
Lithium dendrite penetration has been widely evidenced in ceramic solid electrolytes (SEs), which ar...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
The majority of the ceramic solid electrolytes (LLZO, LATP) demonstrate polycrystalline grain/grain-...
Development of high energy density solid-state batteries with Li metal anodes has been limited by un...
The oxide known as LLZO, with nominal composition Li<sub>7</sub>La<sub>3</sub>Zr<sub>2</sub>O<sub>12...
© 2015 American Chemical Society. The oxide known as LLZO, with nominal composition Li7La3Zr2O12, is...
Li deposition is observed and measured on a solid electrolyte in the vicinity of a metallic current ...
The use of lithium (Li) or sodium (Na) metal anodes together with highly ion-conductive solid electr...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
International audienceSolid electrolytes are generating considerable interest for all-solid-state Li...
All-solid-state batteries (ASSB) are candidates for the next-generation of battery electric vehicles...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
Under electrochemical cycling, stress intensification and relaxation within small volumes at the lit...
All-solid-state lithium (Li) batteries provide a promising pathway toward high energy and power dens...
Mechanical degradation of lithium-ion battery (LIB) electrodes has been correlated with capacity fad...
Lithium dendrite penetration has been widely evidenced in ceramic solid electrolytes (SEs), which ar...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
The majority of the ceramic solid electrolytes (LLZO, LATP) demonstrate polycrystalline grain/grain-...
Development of high energy density solid-state batteries with Li metal anodes has been limited by un...
The oxide known as LLZO, with nominal composition Li<sub>7</sub>La<sub>3</sub>Zr<sub>2</sub>O<sub>12...
© 2015 American Chemical Society. The oxide known as LLZO, with nominal composition Li7La3Zr2O12, is...
Li deposition is observed and measured on a solid electrolyte in the vicinity of a metallic current ...
The use of lithium (Li) or sodium (Na) metal anodes together with highly ion-conductive solid electr...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
International audienceSolid electrolytes are generating considerable interest for all-solid-state Li...
All-solid-state batteries (ASSB) are candidates for the next-generation of battery electric vehicles...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
Under electrochemical cycling, stress intensification and relaxation within small volumes at the lit...
All-solid-state lithium (Li) batteries provide a promising pathway toward high energy and power dens...
Mechanical degradation of lithium-ion battery (LIB) electrodes has been correlated with capacity fad...