In this report we examine the influence of electrode binder and electrolyte solvent on the electrochemical response of carbon based Li-O2 battery cathodes. Much higher discharge capacities were noted for cathodes discharged in DMSO compared to TEGDME. The increased capacities were related to the large spherical discharge products formed in DMSO. Characteristic toroids which have been noted in TEGDME electrolytes previously were not observed due to the low water content of the electrolyte. Linear voltage sweeps were used to investigate ORR in both of the solvents for each of the binder systems (PVDF, PVP, PEO and PTFE) and related to the Li2O2 formed on the cathode surfaces. Galvanostatic tests were also conducted in air as a comparison with...
The rechargeable Li-O2 battery has attracted interest due to its high theoretical energy density (ab...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
In this work Li-O2 batteries have been investigated. Their theoretical specific energy is 3500 Wh/(k...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
In this study we report on the direct proportionality between cathode surface area and first dischar...
The Li-O2 battery is a promising electrochemical energy storage platform for transportation applicat...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...
We investigate the impact of using a carbon based gas diffusion layer (GDL) as the current collector...
High energy storage demand from electrical vehicle (target set by U.S Advanced Battery Consortium: 3...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...
The electrochemical behaviour of MnO2 nanorod and Super P carbon based Li-O2 battery cathodes in wat...
Carbon-based, high surface area gas diffusion electrodes (GDEs) are commonly used as cathodes in Li-...
This report investigates the influence of electrolyte selection and the addition of Pd nanoparticle ...
With the increasing importance of electrified transport, the need for high energy density storage is...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
The rechargeable Li-O2 battery has attracted interest due to its high theoretical energy density (ab...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
In this work Li-O2 batteries have been investigated. Their theoretical specific energy is 3500 Wh/(k...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
In this study we report on the direct proportionality between cathode surface area and first dischar...
The Li-O2 battery is a promising electrochemical energy storage platform for transportation applicat...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...
We investigate the impact of using a carbon based gas diffusion layer (GDL) as the current collector...
High energy storage demand from electrical vehicle (target set by U.S Advanced Battery Consortium: 3...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...
The electrochemical behaviour of MnO2 nanorod and Super P carbon based Li-O2 battery cathodes in wat...
Carbon-based, high surface area gas diffusion electrodes (GDEs) are commonly used as cathodes in Li-...
This report investigates the influence of electrolyte selection and the addition of Pd nanoparticle ...
With the increasing importance of electrified transport, the need for high energy density storage is...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
The rechargeable Li-O2 battery has attracted interest due to its high theoretical energy density (ab...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
In this work Li-O2 batteries have been investigated. Their theoretical specific energy is 3500 Wh/(k...