The effects that electrolyte and air cathode formulation have on discharge capacity, rate capability, and the rechargeability of the lithium/oxygen organic electrolyte cell were characterized. To characterize the effects of cell formulation on the discharge reaction, we used techniques including static and dynamic gas consumption measurements and scanning electron microscopy. It was found that electrolyte formulation has the largest effect on discharge capacity and rate capability. Electrode processing is also important in determining discharge capacity at low rate. The Brunauer-Emmett-Teller surface area of the carbon black used to prepare the air electrode is not a significant factor in determining discharge capacity. The discharge produc...
Lithium-Air Batteries (LAB) are one of the most promising upcoming energy storage devices. With a th...
A continuum model of an aprotic lithium/oxygen battery is validated against experimental first-disch...
Lithium-air (Li-air) batteries have a theoretical specific energy comparable to gasolines. The air c...
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...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
Lithium oxygen battery has the potential to outdo the best battery system on the market due to its h...
Lithium oxygen battery has the potential to outdo the best battery system on the market due to its h...
Lithium-Air Batteries (LAB) are one of the most promising upcoming energy storage devices. With a th...
A diffusion-limited transient mathematical model for a lithium/air cell, with the air cathode pores ...
Lithium-Air Batteries (LAB) are one of the most promising upcoming energy storage devices. With a th...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
Air cathodes, where oxygen reacts with Li ions and electrons with discharge oxide stored in their po...
Lithium-Air Batteries (LAB) are one of the most promising upcoming energy storage devices. With a th...
A continuum model of an aprotic lithium/oxygen battery is validated against experimental first-disch...
Lithium-Air Batteries (LAB) are one of the most promising upcoming energy storage devices. With a th...
A continuum model of an aprotic lithium/oxygen battery is validated against experimental first-disch...
Lithium-air (Li-air) batteries have a theoretical specific energy comparable to gasolines. The air c...
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...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
Lithium oxygen battery has the potential to outdo the best battery system on the market due to its h...
Lithium oxygen battery has the potential to outdo the best battery system on the market due to its h...
Lithium-Air Batteries (LAB) are one of the most promising upcoming energy storage devices. With a th...
A diffusion-limited transient mathematical model for a lithium/air cell, with the air cathode pores ...
Lithium-Air Batteries (LAB) are one of the most promising upcoming energy storage devices. With a th...
In this report we examine the influence of electrode binder and electrolyte solvent on the electroch...
Air cathodes, where oxygen reacts with Li ions and electrons with discharge oxide stored in their po...
Lithium-Air Batteries (LAB) are one of the most promising upcoming energy storage devices. With a th...
A continuum model of an aprotic lithium/oxygen battery is validated against experimental first-disch...
Lithium-Air Batteries (LAB) are one of the most promising upcoming energy storage devices. With a th...
A continuum model of an aprotic lithium/oxygen battery is validated against experimental first-disch...
Lithium-air (Li-air) batteries have a theoretical specific energy comparable to gasolines. The air c...