Solid-state lithium batteries comprising a ceramic electrolyte instead of a liquid one enable safer high-energy batteries. Their manufacturing usually requires a high temperature heat treatment to interconnect electrolyte, electrodes, and if applicable, further components like current collectors. Tantalum-substituted Li7La3Zr2O12 as electrolyte and LiCoO2 as active material on the cathode side were chosen because of their high ionic conductivity and energy density, respectively. However, both materials react severely with each other at temperatures around 1085 °C thus leading to detrimental secondary phases. Thin-film technologies open a pathway for manufacturing compounds of electrolyte and active material at lower processing temperatures....
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
In conventional lithium ion batteries, the using of liquid electrolyte is the bottleneck for improvi...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
Batteries belong to the most efficient storage media for electrical energy. Among the battery types ...
Liquid organic electrolytes cause safety problems due to an insufficient thermal and electrochemical...
The combination of solid ceramic-like electrolytes with inorganic electrodes, thus creating an all s...
Processing of Li7La3Zr2O12 electrolyte for all solid state batteriesT. Reppert, C.-L. Tsai, E.-M. Ha...
Lithium ion conductors based on complex oxide materials are considered to be outstanding from their ...
In the past decade, electricity generated from renewable energy sources, as well as electro mobility...
Copyright © 2018 American Chemical Society. All-solid-state batteries promise significant safety and...
Copyright © 2018 American Chemical Society. All-solid-state batteries promise significant safety and...
All solid-state Li batteries based on oxide-class solid electrolyte are considered to be out-standin...
All-solid-state lithium batteries (ASB) have better safety properties due to the incombustible solid...
Abstract Security risks of flammability and explosion represent major problems with the use of conve...
All-solid-state batteries promise significant safety and energy density advantages over liquid-elect...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
In conventional lithium ion batteries, the using of liquid electrolyte is the bottleneck for improvi...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
Batteries belong to the most efficient storage media for electrical energy. Among the battery types ...
Liquid organic electrolytes cause safety problems due to an insufficient thermal and electrochemical...
The combination of solid ceramic-like electrolytes with inorganic electrodes, thus creating an all s...
Processing of Li7La3Zr2O12 electrolyte for all solid state batteriesT. Reppert, C.-L. Tsai, E.-M. Ha...
Lithium ion conductors based on complex oxide materials are considered to be outstanding from their ...
In the past decade, electricity generated from renewable energy sources, as well as electro mobility...
Copyright © 2018 American Chemical Society. All-solid-state batteries promise significant safety and...
Copyright © 2018 American Chemical Society. All-solid-state batteries promise significant safety and...
All solid-state Li batteries based on oxide-class solid electrolyte are considered to be out-standin...
All-solid-state lithium batteries (ASB) have better safety properties due to the incombustible solid...
Abstract Security risks of flammability and explosion represent major problems with the use of conve...
All-solid-state batteries promise significant safety and energy density advantages over liquid-elect...
There is a growing need for high energy, high power and safe lithium batteries for myriads of applic...
In conventional lithium ion batteries, the using of liquid electrolyte is the bottleneck for improvi...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...