Stability of the electrolyte toward reduced oxygen species generated at the cathode is a crucial challenge for the rechargeable nonaqueous Li-O-2 battery. Here, we investigate dimethylformamide as the basis of an electrolyte. Although reactions at the O-2 cathode on the first discharge charge cycle are dominated by reversible Li2O2 formation/decomposition, there is also electrolyte decomposition, which increases on cycling. The products of decomposition at the. cathode on discharge are Li2O2, Li2CO3, HCO2Li, CH3CO2Li, NO, H2O, and CO2. Li2CO3 accumulates in the electrode with cycling. The stability of dimethylformamide toward reduced oxygen species is insufficient for its use in the rechargeable nonaqueous Li-O-2 battery.</p
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
The seemingly simple reaction of Li-O2 batteries involving lithium and oxygen makes this chemistry a...
The seemingly simple reaction of Li-O2 batteries involving lithium and oxygen makes this chemistry a...
Stability of the electrolyte toward reduced oxygen species generated at the cathode is a crucial cha...
Stability of the electrolyte toward reduced oxygen species generated at the cathode is a crucial cha...
The nonaqueous rechargeable lithium-O-2 battery containing an alkyl carbonate electrolyte discharges...
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 seemingly simple reaction of Li-O-2 batteries involving lithium and oxygen makes this chemistry ...
The seemingly simple reaction of Li-O-2 batteries involving lithium and oxygen makes this chemistry ...
The stability of electrolytes is a significant limitation for cycle life performance in Li-O2 batter...
The rechargeable nonaqueous lithium-air (Li-O2) battery is receiving a great deal of interest becaus...
The electrocatalysis of the oxygen reduction reaction and oxygen evolution reaction in nonaqueous Li...
Aprotic Li-O2 batteries offer an appealing opportunity to make use of our immediate environment; har...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
The seemingly simple reaction of Li-O2 batteries involving lithium and oxygen makes this chemistry a...
The seemingly simple reaction of Li-O2 batteries involving lithium and oxygen makes this chemistry a...
Stability of the electrolyte toward reduced oxygen species generated at the cathode is a crucial cha...
Stability of the electrolyte toward reduced oxygen species generated at the cathode is a crucial cha...
The nonaqueous rechargeable lithium-O-2 battery containing an alkyl carbonate electrolyte discharges...
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 seemingly simple reaction of Li-O-2 batteries involving lithium and oxygen makes this chemistry ...
The seemingly simple reaction of Li-O-2 batteries involving lithium and oxygen makes this chemistry ...
The stability of electrolytes is a significant limitation for cycle life performance in Li-O2 batter...
The rechargeable nonaqueous lithium-air (Li-O2) battery is receiving a great deal of interest becaus...
The electrocatalysis of the oxygen reduction reaction and oxygen evolution reaction in nonaqueous Li...
Aprotic Li-O2 batteries offer an appealing opportunity to make use of our immediate environment; har...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
The seemingly simple reaction of Li-O2 batteries involving lithium and oxygen makes this chemistry a...
The seemingly simple reaction of Li-O2 batteries involving lithium and oxygen makes this chemistry a...