We investigate the electrolyte stability and discharge products of an ionic liquid based Li O2 battery through soft X ray emission spectroscopy XES experiments, which offer unique site specificity for detecting subtle changes in the local nitrogen and oxygen environment. We benchmark the valence electronic structures of the molecules composing the electrolyte, namely the solvent PP13 TFSI , the salt LiTFSI, and the PP13 cation. Then, the transformation of the electrolyte is shown using cathodes stopped at different discharge and charge stages. We provide experimental evidence that the nitrogen site of the salt is unstable during electrochemical operation. The chemical environment of the nitrogen atoms is gradually changed during the elect...
The rechargeable Li-O2 battery has attracted interest due to its high theoretical energy density (ab...
Lithium ion insertion into electrode materials is commonly used in rechargeable battery technology. ...
Lithium ion insertion into electrode materials is commonly used in rechargeable battery technology. ...
We investigate the electrolyte stability and discharge products of an ionic liquid based Li O2 batte...
We investigate the electrolyte stability and discharge products of an ionic liquid based Li O2 batte...
We investigate the electrolyte stability and discharge products of an ionic-liquid-based Li-O2 batte...
none4noImproving the stability of the cathode interface is one of the critical issues for the develo...
Ionic liquids (ILs) have been proposed as promising solvents for Li-air battery electrolytes. Here, ...
Ionic liquids (ILs) have been proposed as promising solvents for Li-air battery electrolytes. Here, ...
Improving the stability of the cathode interface is one of the critical issues for the development o...
Improving the stability of the cathode interface is one of the critical issues for the development o...
Ionic liquids (ILs) have been proposed as promising solvents for Li–air battery electrolytes. Here, ...
In this work Li-O2 batteries have been investigated. Their theoretical specific energy is 3500 Wh/(k...
The chemical stability of the Li-O-2 battery components (cathode and electrolyte) in contact with li...
The chemical stability of the Li-O-2 battery components (cathode and electrolyte) in contact with li...
The rechargeable Li-O2 battery has attracted interest due to its high theoretical energy density (ab...
Lithium ion insertion into electrode materials is commonly used in rechargeable battery technology. ...
Lithium ion insertion into electrode materials is commonly used in rechargeable battery technology. ...
We investigate the electrolyte stability and discharge products of an ionic liquid based Li O2 batte...
We investigate the electrolyte stability and discharge products of an ionic liquid based Li O2 batte...
We investigate the electrolyte stability and discharge products of an ionic-liquid-based Li-O2 batte...
none4noImproving the stability of the cathode interface is one of the critical issues for the develo...
Ionic liquids (ILs) have been proposed as promising solvents for Li-air battery electrolytes. Here, ...
Ionic liquids (ILs) have been proposed as promising solvents for Li-air battery electrolytes. Here, ...
Improving the stability of the cathode interface is one of the critical issues for the development o...
Improving the stability of the cathode interface is one of the critical issues for the development o...
Ionic liquids (ILs) have been proposed as promising solvents for Li–air battery electrolytes. Here, ...
In this work Li-O2 batteries have been investigated. Their theoretical specific energy is 3500 Wh/(k...
The chemical stability of the Li-O-2 battery components (cathode and electrolyte) in contact with li...
The chemical stability of the Li-O-2 battery components (cathode and electrolyte) in contact with li...
The rechargeable Li-O2 battery has attracted interest due to its high theoretical energy density (ab...
Lithium ion insertion into electrode materials is commonly used in rechargeable battery technology. ...
Lithium ion insertion into electrode materials is commonly used in rechargeable battery technology. ...