Solid‐state lithium batteries will revolutionize the lithium‐ion battery and energy storage applications if certain key challenges can be resolved. The formation of lithium‐protrusions (dendrites) that can cause catastrophic short‐circuiting is one of the main obstacles, and progresses by a mechanism that is not yet fully understood. By utilizing X‐ray computed tomography with nanoscale resolution, the 3D morphology of lithium protrusions inside short‐circuited solid electrolytes has been obtained for the first time. Distinguishable from adjacent voids, lithium protrusions partially filled cracks that tended to propagate intergranularly through the solid electrolyte, forming a large waved plane in the shape of the grain boundaries. Occasion...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
Growing demand for rechargeable batteries with higher energy densities has motivated research focuse...
All-solid-state batteries with a Li anode and ceramic electrolyte have the potential to deliver a st...
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...
Lithium dendrite (filament) propagation through ceramic electrolytes, leading to short circuits at h...
The growth of electrodeposited lithium microstructures on metallic lithium electrodes has prevented ...
Operando high-resolution light microscopy with extended depth of field is used to observe large regi...
A promising approach for enabling rechargeable batteries with significantly higher energy densities ...
Operando high-resolution light microscopy with extended depth of field is used to observe large regi...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Solid-state electrolytes (SSEs) are key to the success and reliability of all-solid-state lithium ba...
Growth of lithium (Li) filaments within solid electrolytes, leading to mechanical degradation of the...
Fracture of lithium-ion battery electrodes is found to contribute to capacity fade and reduce the li...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
Growing demand for rechargeable batteries with higher energy densities has motivated research focuse...
All-solid-state batteries with a Li anode and ceramic electrolyte have the potential to deliver a st...
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...
Lithium dendrite (filament) propagation through ceramic electrolytes, leading to short circuits at h...
The growth of electrodeposited lithium microstructures on metallic lithium electrodes has prevented ...
Operando high-resolution light microscopy with extended depth of field is used to observe large regi...
A promising approach for enabling rechargeable batteries with significantly higher energy densities ...
Operando high-resolution light microscopy with extended depth of field is used to observe large regi...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Solid-state electrolytes (SSEs) are key to the success and reliability of all-solid-state lithium ba...
Growth of lithium (Li) filaments within solid electrolytes, leading to mechanical degradation of the...
Fracture of lithium-ion battery electrodes is found to contribute to capacity fade and reduce the li...
Solid electrolytes potentially enable rechargeable batteries with lithium metal anodes possessing hi...
Growing demand for rechargeable batteries with higher energy densities has motivated research focuse...
All-solid-state batteries with a Li anode and ceramic electrolyte have the potential to deliver a st...