The high ionic conductivity and wide electrochemical stability of the lithium garnet Li7La3Zr2O12(LLZO) make it a viable solid electrolyte for all-solid-state lithium batteries with superior capacity and power densities. Contrary to common ceramic processing routes of bulk pellets, thin film solid electrolytes could enable large-area fabrication, and increase energy and power densities by reducing the bulkiness, weight and critically, the area-specific resistance of the electrolyte. Fabrication of LLZO films has nonetheless been challenging because of lithium losses and formation of impurity phases that result in low densities and poor ionic conductivities as compared to bulk pellets. Here, a scalable method for fabricating submicron films ...
The detailed characterization of garnet-type Li-ion conducting Li7La3Zr2O12 (LLZO) solid electrolyte...
Replacement of Li-ion liquid-state electrolytes by solid-state counterparts in a Li-ion battery (LIB...
All-solid-state Li battery containing oxide-class solid electrolyte is considered to be out stand fr...
Most commercial state-of-the-art batteries work with a liquid organic electrolyte which might cause ...
To avoid problems connected to organic liquid electrolytes used in conventional Li-ion batteries, so...
In conventional lithium ion batteries liquid electrolytes are used for the ionic transport. The orga...
A major drawback of conventional Li-ion batteries is the use of organic liquid electrolytes. As an a...
Liquid organic electrolytes cause safety problems due to an insufficient thermal and electrochemical...
The detailed characterization of garnet-type Li-ion conducting Li₇La₃Zr₂O₁₂ (LLZO) solid electrolyte...
Thin film deposition of garnet electrolytes for high energy density all-solid-state lithium batterie...
Replacement of Li-ion liquid-state electrolytes by solid-state counterparts in a Li-ion battery (LIB...
The detailed characterization of garnet-type Li-ion conducting Li7La3Zr2O12 (LLZO) solid electrolyte...
Thin film deposition of garnet electrolytes for high energy density all-solid-state lithium batterie...
Thin film deposition of garnet electrolytes for high energy density all-solid-state lithium batterie...
The detailed characterization of garnet-type Li-ion conducting Li7La3Zr2O12 (LLZO) solid electrolyte...
The detailed characterization of garnet-type Li-ion conducting Li7La3Zr2O12 (LLZO) solid electrolyte...
Replacement of Li-ion liquid-state electrolytes by solid-state counterparts in a Li-ion battery (LIB...
All-solid-state Li battery containing oxide-class solid electrolyte is considered to be out stand fr...
Most commercial state-of-the-art batteries work with a liquid organic electrolyte which might cause ...
To avoid problems connected to organic liquid electrolytes used in conventional Li-ion batteries, so...
In conventional lithium ion batteries liquid electrolytes are used for the ionic transport. The orga...
A major drawback of conventional Li-ion batteries is the use of organic liquid electrolytes. As an a...
Liquid organic electrolytes cause safety problems due to an insufficient thermal and electrochemical...
The detailed characterization of garnet-type Li-ion conducting Li₇La₃Zr₂O₁₂ (LLZO) solid electrolyte...
Thin film deposition of garnet electrolytes for high energy density all-solid-state lithium batterie...
Replacement of Li-ion liquid-state electrolytes by solid-state counterparts in a Li-ion battery (LIB...
The detailed characterization of garnet-type Li-ion conducting Li7La3Zr2O12 (LLZO) solid electrolyte...
Thin film deposition of garnet electrolytes for high energy density all-solid-state lithium batterie...
Thin film deposition of garnet electrolytes for high energy density all-solid-state lithium batterie...
The detailed characterization of garnet-type Li-ion conducting Li7La3Zr2O12 (LLZO) solid electrolyte...
The detailed characterization of garnet-type Li-ion conducting Li7La3Zr2O12 (LLZO) solid electrolyte...
Replacement of Li-ion liquid-state electrolytes by solid-state counterparts in a Li-ion battery (LIB...
All-solid-state Li battery containing oxide-class solid electrolyte is considered to be out stand fr...