In this study we report on the direct proportionality between cathode surface area and first discharge capacity of non-aqueous Li-O2 cells using ether-based electrolytes. Seven different highly structured carbon blacks, characterized by different surface areas and porosities, were used to prepare non-catalyzed cathodes. Surface measurements and porosity analyzes were carried out on both raw materials and electrodes in order to estimate the fraction of cathode surface accessible by the electrolyte. The first specific discharge capacity of different cathodes was then normalized over its specific surface and a strong correlation between the two quantities was found. This result strongly supports a discharge mechanism for Li-O2 batteries wherei...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...
We analyze in detail the relationship between pore size distribution and discharge capacity for cath...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
Porous carbon materials play key roles in rechargeable Li-O2 batteries as oxygen diffusion media and...
Carbon has been used widely as the basis of porous cathodes for nonaqueous Li-O-2 cells. However, th...
Carbon has been used widely as the basis of porous cathodes for nonaqueous Li-O-2 cells. However, th...
Carbon has been used widely as the basis of porous cathodes for nonaqueous Li-O-2 cells. However, th...
The Li-O2 battery is a promising electrochemical energy storage platform for transportation applicat...
Carbon-based, high surface area gas diffusion electrodes (GDEs) are commonly used as cathodes in Li-...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
The carbon gas-diffusion-electrodes were studied in a unique home-made electrochemical cell. The maj...
The effects that electrolyte and air cathode formulation have on discharge capacity, rate capability...
In the development of lithium-air batteries, to understand how the porous structure of the cathode a...
We investigate the impact of using a carbon based gas diffusion layer (GDL) as the current collector...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...
We analyze in detail the relationship between pore size distribution and discharge capacity for cath...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
Porous carbon materials play key roles in rechargeable Li-O2 batteries as oxygen diffusion media and...
Carbon has been used widely as the basis of porous cathodes for nonaqueous Li-O-2 cells. However, th...
Carbon has been used widely as the basis of porous cathodes for nonaqueous Li-O-2 cells. However, th...
Carbon has been used widely as the basis of porous cathodes for nonaqueous Li-O-2 cells. However, th...
The Li-O2 battery is a promising electrochemical energy storage platform for transportation applicat...
Carbon-based, high surface area gas diffusion electrodes (GDEs) are commonly used as cathodes in Li-...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
The carbon gas-diffusion-electrodes were studied in a unique home-made electrochemical cell. The maj...
The effects that electrolyte and air cathode formulation have on discharge capacity, rate capability...
In the development of lithium-air batteries, to understand how the porous structure of the cathode a...
We investigate the impact of using a carbon based gas diffusion layer (GDL) as the current collector...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...
We analyze in detail the relationship between pore size distribution and discharge capacity for cath...
This work investigates the impact of electrochemical reactions and products on discharge capacity an...