Li-O-2 cells composed of a carbon cathode containing an alpha-MnO2 nanowire catalyst and a Kynar (PVDF-HFP) binder were cycled with different electrolytes containing 0.5 M LiB(CN)(4) salt in polyethylene glycol dimethyl ether (PEGDME) or tetraethylene glycol dimethyl ether (Tetraglyme) solvents. All cells exhibited fast capacity fading. To explain this, the surface chemistry of the carbon electrodes were investigated by synchrotron based hard X-ray photoelectron spectroscopy (HAXPES) using two photon energies of 2300 and 6900 eV. It is shown that the LiB(CN)(4) salt and Kynar binder were degraded during cycling, forming a layer composed of salt and binder residues on the cathode surface. The degradation mechanism of the salt differed in the...
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...
International audienceIn this work we discuss the degradation chemistry on carbon-free electrodes of...
Li–O<sub>2</sub> cells composed of a carbon cathode containing an α-MnO<sub>2</sub> nanowire catalys...
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...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
In this work Li-O2 batteries have been investigated. Their theoretical specific energy is 3500 Wh/(k...
The chemical stability of the Li–O<sub>2</sub> battery components (cathode and electrolyte) in conta...
The stability of lithium salts, especially in the presence of reduced oxygen species, O-2 and H2O (e...
We investigate the electrolyte stability and discharge products of an ionic-liquid-based Li-O2 batte...
Electrolytes which have different LiBF4 salt concentrations (0.8 m, 1.0 m, 1.2 m and 1.4 m) in the r...
Electrolytes which have different LiBF4 salt concentrations (0.8 m, 1.0 m, 1.2 m and 1.4 m) in the r...
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...
International audienceIn this work we discuss the degradation chemistry on carbon-free electrodes of...
Li–O<sub>2</sub> cells composed of a carbon cathode containing an α-MnO<sub>2</sub> nanowire catalys...
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...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
In this work Li-O2 batteries have been investigated. Their theoretical specific energy is 3500 Wh/(k...
The chemical stability of the Li–O<sub>2</sub> battery components (cathode and electrolyte) in conta...
The stability of lithium salts, especially in the presence of reduced oxygen species, O-2 and H2O (e...
We investigate the electrolyte stability and discharge products of an ionic-liquid-based Li-O2 batte...
Electrolytes which have different LiBF4 salt concentrations (0.8 m, 1.0 m, 1.2 m and 1.4 m) in the r...
Electrolytes which have different LiBF4 salt concentrations (0.8 m, 1.0 m, 1.2 m and 1.4 m) in the r...
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...
International audienceIn this work we discuss the degradation chemistry on carbon-free electrodes of...