© 2019, The Author(s). Due to the high theoretical specific energy, the lithium–oxygen battery has been heralded as a promising energy storage system for applications such as electric vehicles. However, its large over-potentials during discharge–charge cycling lead to the formation of side-products, and short cycle life. Herein, we report an ionic liquid bearing the redox active 2,2,6,6-tetramethyl-1-piperidinyloxy moiety, which serves multiple functions as redox mediator, oxygen shuttle, lithium anode protector, as well as electrolyte solvent. The additive contributes a 33-fold increase of the discharge capacity in comparison to a pure ether-based electrolyte and lowers the over-potential to an exceptionally low value of 0.9 V. Meanwhile, ...
none3noThe use of ionic liquid (IL)-based electrolytes and porous carbonaceous cathodes is today one...
A novel lithium-oxygen battery exploiting PYR14TFSI-LiTFSI as ionic liquid-based electrolyte medium ...
This work reports a detailed characterization of the reduction of oxygen in pyrrolidinium-based ioni...
The replacement of the combustion-engine by sustainable electric or hybrid vehicles, may effectively...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
Effective utilization of Li-metal electrodes is vital for maximizing the specific energy of lithium–...
Electrolytes are key components of Li/O2 batteries. The ionic liquid-like structure and good electro...
Cathode configurations reported herein are alternative to the most diffused ones for application in ...
Lithium–oxygen battery development is hampered by degradation reactions initiated by superoxide, whi...
Concentrated solutions of lithium bis(trifluoromethanesulfonyl)imide (LiTFSI) and lithium nitrate (L...
Ionic liquids’ (ILs) reusability, non-volatility and non-corrosiveness, as well as their ease of iso...
Electrolytes composed of dimethylsulfoxide (DMSO), 1-ethyl-3-methylimidazolium bis(trifluoromethylsu...
The development of moisture-tolerant, LiOH-based non-aqueous Li-O2 batteries is a promising route to...
The unique properties of room temperature ionic liquids make them promising electrolytes for next-ge...
With the increasing importance of electrified transport, the need for high energy density storage is...
none3noThe use of ionic liquid (IL)-based electrolytes and porous carbonaceous cathodes is today one...
A novel lithium-oxygen battery exploiting PYR14TFSI-LiTFSI as ionic liquid-based electrolyte medium ...
This work reports a detailed characterization of the reduction of oxygen in pyrrolidinium-based ioni...
The replacement of the combustion-engine by sustainable electric or hybrid vehicles, may effectively...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
Effective utilization of Li-metal electrodes is vital for maximizing the specific energy of lithium–...
Electrolytes are key components of Li/O2 batteries. The ionic liquid-like structure and good electro...
Cathode configurations reported herein are alternative to the most diffused ones for application in ...
Lithium–oxygen battery development is hampered by degradation reactions initiated by superoxide, whi...
Concentrated solutions of lithium bis(trifluoromethanesulfonyl)imide (LiTFSI) and lithium nitrate (L...
Ionic liquids’ (ILs) reusability, non-volatility and non-corrosiveness, as well as their ease of iso...
Electrolytes composed of dimethylsulfoxide (DMSO), 1-ethyl-3-methylimidazolium bis(trifluoromethylsu...
The development of moisture-tolerant, LiOH-based non-aqueous Li-O2 batteries is a promising route to...
The unique properties of room temperature ionic liquids make them promising electrolytes for next-ge...
With the increasing importance of electrified transport, the need for high energy density storage is...
none3noThe use of ionic liquid (IL)-based electrolytes and porous carbonaceous cathodes is today one...
A novel lithium-oxygen battery exploiting PYR14TFSI-LiTFSI as ionic liquid-based electrolyte medium ...
This work reports a detailed characterization of the reduction of oxygen in pyrrolidinium-based ioni...