High power solid-state Li batteries (SSLB) are hindered by the formation of dendrite-like structures at high current rates. Hence, new design principles are needed to overcome this limitation. By introducing dislocations, we aim to tailor mechanical properties in order to withstand the mechanical stress leading to Li penetration and resulting in a short circuit by a crack-opening mechanism. Such defect engineering, furthermore, appears to enable whisker-like Li metal electrodes for high-rate Li plating. To reach these goals, the challenge of introducing dislocations into ceramic electrolytes needs to be addressed which requires to establish fundamental understanding of the mechanics of dislocations in the particular ceramics. Here we evalua...
© 2021 Acta Materialia Inc. Although lithium-metal anodes are being extensively examined in research...
Solid‐state lithium batteries will revolutionize the lithium‐ion battery and energy storage applicat...
Development of high energy density solid-state batteries with Li metal anodes has been limited by un...
High power solid-state Li batteries (SSLB) are hindered by the formation of dendrite-like structures...
High power solid-state Li batteries (SSLB) are hindered by the formation of dendrite-like structures...
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...
Solid-state lithium batteries cannot achieve reasonable power densities because of dendrites, whose ...
Under electrochemical cycling, stress intensification and relaxation within small volumes at the lit...
When lithium-ion batteries serve in extreme environments like space, severe irradiation might induce...
All-solid-state lithium (Li) batteries provide a promising pathway toward high energy and power dens...
Dislocations are attracting increasing attention for their potential to tune a whole range of functi...
© 2016 Acta Materialia Inc. Electrodes softening during lithium insertion may result in degeneration...
Intrinsic material microstructure features, such as pores or void spaces, grains, and defects can af...
The majority of the ceramic solid electrolytes (LLZO, LATP) demonstrate polycrystalline grain/grain-...
© 2021 Acta Materialia Inc. Although lithium-metal anodes are being extensively examined in research...
Solid‐state lithium batteries will revolutionize the lithium‐ion battery and energy storage applicat...
Development of high energy density solid-state batteries with Li metal anodes has been limited by un...
High power solid-state Li batteries (SSLB) are hindered by the formation of dendrite-like structures...
High power solid-state Li batteries (SSLB) are hindered by the formation of dendrite-like structures...
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...
Solid-state lithium batteries cannot achieve reasonable power densities because of dendrites, whose ...
Under electrochemical cycling, stress intensification and relaxation within small volumes at the lit...
When lithium-ion batteries serve in extreme environments like space, severe irradiation might induce...
All-solid-state lithium (Li) batteries provide a promising pathway toward high energy and power dens...
Dislocations are attracting increasing attention for their potential to tune a whole range of functi...
© 2016 Acta Materialia Inc. Electrodes softening during lithium insertion may result in degeneration...
Intrinsic material microstructure features, such as pores or void spaces, grains, and defects can af...
The majority of the ceramic solid electrolytes (LLZO, LATP) demonstrate polycrystalline grain/grain-...
© 2021 Acta Materialia Inc. Although lithium-metal anodes are being extensively examined in research...
Solid‐state lithium batteries will revolutionize the lithium‐ion battery and energy storage applicat...
Development of high energy density solid-state batteries with Li metal anodes has been limited by un...