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 X-ray diffraction, the propagation of cracks and the propagation of lithium dendrites through the solid electrolyte have been tracked in a Li/Li6PS5Cl/Li cell as a function of the charge passed. On plating, cracking initiates with spallation, conical ‘pothole’-like cracks that form in the ceramic electrolyte near the surface with the plated electrode. The spallations form predominantly at the lithium electrode edges where local fields are high. ...
High–energy-density materials that undergo conversion and/or alloying reactions hold promise for nex...
The implementation of solid-state electrolytes (SSEs) into lithium-ion batteries shows much promise ...
The structure degradation of commercial Lithium-ion battery (LIB) graphite anodes with different cyc...
Lithium dendrite (filament) propagation through ceramic electrolytes, leading to short circuits at h...
Solid‐state lithium batteries will revolutionize the lithium‐ion battery and energy storage applicat...
Solid state batteries have attracted extensive attention, but the lithium penetration through the so...
Solid‐state lithium batteries will revolutionize the lithium‐ion battery and energy storage applicat...
All-solid-state batteries with a Li anode and ceramic electrolyte have the potential to deliver a st...
Fracture of lithium-ion battery electrodes is found to contribute to capacity fade and reduce the li...
All-solid-state lithium (Li) batteries provide a promising pathway toward high energy and power dens...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Growth of lithium (Li) filaments within solid electrolytes, leading to mechanical degradation of the...
Charging time and range anxiety are two key barriers to wider electric vehicle (EV) adoption. Reduci...
Li deposition is observed and measured on a solid electrolyte in the vicinity of a metallic current ...
High–energy-density materials that undergo conversion and/or alloying reactions hold promise for nex...
The implementation of solid-state electrolytes (SSEs) into lithium-ion batteries shows much promise ...
The structure degradation of commercial Lithium-ion battery (LIB) graphite anodes with different cyc...
Lithium dendrite (filament) propagation through ceramic electrolytes, leading to short circuits at h...
Solid‐state lithium batteries will revolutionize the lithium‐ion battery and energy storage applicat...
Solid state batteries have attracted extensive attention, but the lithium penetration through the so...
Solid‐state lithium batteries will revolutionize the lithium‐ion battery and energy storage applicat...
All-solid-state batteries with a Li anode and ceramic electrolyte have the potential to deliver a st...
Fracture of lithium-ion battery electrodes is found to contribute to capacity fade and reduce the li...
All-solid-state lithium (Li) batteries provide a promising pathway toward high energy and power dens...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Growth of lithium (Li) filaments within solid electrolytes, leading to mechanical degradation of the...
Charging time and range anxiety are two key barriers to wider electric vehicle (EV) adoption. Reduci...
Li deposition is observed and measured on a solid electrolyte in the vicinity of a metallic current ...
High–energy-density materials that undergo conversion and/or alloying reactions hold promise for nex...
The implementation of solid-state electrolytes (SSEs) into lithium-ion batteries shows much promise ...
The structure degradation of commercial Lithium-ion battery (LIB) graphite anodes with different cyc...