Governing the fundamental reaction in lithium-oxygen batteries is vital to realizing their potentially high energy density. Here, novel oxygen reduction reaction (ORR) catalysts capable of mediating the lithium and oxygen reaction within a solution-driven discharge, which promotes the solution-phase formation of lithium peroxide (Li2O2), are reported, thus enhancing the discharge capacity. The new catalysts are derived from mimicking the biological redox mediation in the electron transport chain in Escherichia coli, where vitamin K2 mediates the oxidation of flavin mononucleotide and the reduction of cytochrome b in the cell membrane. The redox potential of vitamin K2 is demonstrated to coincide with the suitable ORR potential range of lith...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...
The discovery of effective catalysts is an important step towards achieving Li-O-2 batteries with lo...
Lithium–oxygen cells in which lithium peroxide forms in solution rather than on the electrode surfac...
Governing the fundamental reaction in lithium-oxygen batteries is vital to realizing their potential...
Lithium-oxygen (Li-O2) batteries employing a lightweight and gaseous oxygen cathode have been spotli...
Despite the high theoretical energy density, the realization of lithium-oxygen batteries with practi...
Despite the exceptionally large theoretical energy density of lithium-oxygen batteries, their high c...
This work reports a detailed characterization of the reduction of oxygen in pyrrolidinium-based ioni...
Research has been carried out into lithium-oxygen cells over the last 20 years in an effort to devel...
It is becoming increasingly clear that current lithium-ion battery technology does not possess a gra...
Increasing demand for lighter and more powerful batteries has driven research beyond lithium-ion bat...
Over recent years, lithium oxygen batteries have received significant interest due to their very hig...
The unique properties of room temperature ionic liquids make them promising electrolytes for next-ge...
The recent introduction of redox mediators as soluble catalysts in electrolytes has aimed at overcom...
A novel design of the non-aqueous lithium air cell is presented with a demonstration of a new reacti...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...
The discovery of effective catalysts is an important step towards achieving Li-O-2 batteries with lo...
Lithium–oxygen cells in which lithium peroxide forms in solution rather than on the electrode surfac...
Governing the fundamental reaction in lithium-oxygen batteries is vital to realizing their potential...
Lithium-oxygen (Li-O2) batteries employing a lightweight and gaseous oxygen cathode have been spotli...
Despite the high theoretical energy density, the realization of lithium-oxygen batteries with practi...
Despite the exceptionally large theoretical energy density of lithium-oxygen batteries, their high c...
This work reports a detailed characterization of the reduction of oxygen in pyrrolidinium-based ioni...
Research has been carried out into lithium-oxygen cells over the last 20 years in an effort to devel...
It is becoming increasingly clear that current lithium-ion battery technology does not possess a gra...
Increasing demand for lighter and more powerful batteries has driven research beyond lithium-ion bat...
Over recent years, lithium oxygen batteries have received significant interest due to their very hig...
The unique properties of room temperature ionic liquids make them promising electrolytes for next-ge...
The recent introduction of redox mediators as soluble catalysts in electrolytes has aimed at overcom...
A novel design of the non-aqueous lithium air cell is presented with a demonstration of a new reacti...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...
The discovery of effective catalysts is an important step towards achieving Li-O-2 batteries with lo...
Lithium–oxygen cells in which lithium peroxide forms in solution rather than on the electrode surfac...