Garnet solid-state electrolytes are promising for lithium metal batteries in terms of safety and stability. However, their rigid and brittle nature under humid air increase the interfacial resistance at the electrode/electrolyte interfaces. Herein, the ionic liquid (IL) 1-butyl-1-methylpyrrolidinium bis(trifluoromethylsulfonyl)amide ([Py1,4]TFSI) is employed to dissolve poly(ethylene oxide) (PEO) polymer microstructures that facilitate ion transport through an amorphous rather than a crystalline polymer matrix. The PEO-IL coatings on Ga doped garnet (LLZO) solid-state electrolyte can effectively suppress the formation of Li2CO3 passivation layers on the garnet surface. Electrochemical impedance spectroscopy results show that the interfacial...
All-solid-state Li-batteries using solid-state electrolytes (SSEs) offer enhanced safety over conven...
Ceramic–polymer solid electrolytes, combined with Li metal anodes, hold the promise for safer and mo...
An advantageous solid electrolyte/liquid electrolyte interface is crucial for the implementation of ...
Li-garnets are promising inorganic ceramic solid electrolytes for lithium metal batteries, showing g...
High grain-boundary resistance, Li-dendrite formation, and electrode/Li interfacial resistance are t...
Solid‐state lithium batteries are widely considered as next‐generation lithium‐ion battery technolog...
Garnet-type Li7La3Zr2O12 solid electrolyte is a promising candidate for all-solid-state batteries ow...
All-solid-state Li-ion batteries with metallic Li anodes and solid electrolytes could offer superior...
Undergraduate Honor Research ScholarshipWhile the development of conventional lithium-ion (Li-ion) b...
All-solid-state batteries (ASSBs) are gaining traction in the arena of energy storage due to their p...
The instability and Li2CO3 contaminants of garnet-type electrolytes exposed to air could lead to in ...
Compared to conventional organic liquid electrolyte, solid-state polymer electrolytes are extensivel...
Due to the intrinsically high ionic conductivity and good interfacial stability towards lithium, gar...
Lithium metal batteries using solid electrolytes are considered to be the next-generation lithium ba...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
All-solid-state Li-batteries using solid-state electrolytes (SSEs) offer enhanced safety over conven...
Ceramic–polymer solid electrolytes, combined with Li metal anodes, hold the promise for safer and mo...
An advantageous solid electrolyte/liquid electrolyte interface is crucial for the implementation of ...
Li-garnets are promising inorganic ceramic solid electrolytes for lithium metal batteries, showing g...
High grain-boundary resistance, Li-dendrite formation, and electrode/Li interfacial resistance are t...
Solid‐state lithium batteries are widely considered as next‐generation lithium‐ion battery technolog...
Garnet-type Li7La3Zr2O12 solid electrolyte is a promising candidate for all-solid-state batteries ow...
All-solid-state Li-ion batteries with metallic Li anodes and solid electrolytes could offer superior...
Undergraduate Honor Research ScholarshipWhile the development of conventional lithium-ion (Li-ion) b...
All-solid-state batteries (ASSBs) are gaining traction in the arena of energy storage due to their p...
The instability and Li2CO3 contaminants of garnet-type electrolytes exposed to air could lead to in ...
Compared to conventional organic liquid electrolyte, solid-state polymer electrolytes are extensivel...
Due to the intrinsically high ionic conductivity and good interfacial stability towards lithium, gar...
Lithium metal batteries using solid electrolytes are considered to be the next-generation lithium ba...
Possible concerns about the safety of rechargeable lithium metal batteries has postponed their intro...
All-solid-state Li-batteries using solid-state electrolytes (SSEs) offer enhanced safety over conven...
Ceramic–polymer solid electrolytes, combined with Li metal anodes, hold the promise for safer and mo...
An advantageous solid electrolyte/liquid electrolyte interface is crucial for the implementation of ...