The oxygen reduction reaction (ORR) in aprotic electrolyte is the essential reaction in metal–oxygen batteries. Capturing and shifting the absorbed metal superoxide intermediates/products from a cathode surface is a long-standing challenge to clarify the ORR mechanism, accelerate the ORR, and improve the stability and energy density of metal–oxygen batteries. Herein, a bioinspired pathway in which cathode solid catalysts and soluble anthraquinone (AQ) molecules initiate an “enzyme–coenzyme” cooperative catalysis mechanism is developed to greatly boost the ORR activity of solid catalysts over 10-fold, in which AQ acts as a scavenger to capture and shift the absorbed superoxide species from the cathode surface to the aprotic electrolyte. Taki...
The discovery of eective catalysts is an important step towards achieving Li–O2 batteries with long ...
Non-aqueous metal–oxygen batteries depend critically on the reversible formation/decomposition of me...
Research on alternative energy harvesting technologies, conversion and storage systems with high eff...
Governing the fundamental reaction in lithium-oxygen batteries is vital to realizing their potential...
International audienceAprotic alkali metal-oxygen batteries require reversible formation of metal su...
Aprotic alkali metal-oxygen batteries require reversible formation of metal superoxide or peroxide o...
© 2015 American Chemical Society. The oxygen reduction reaction (ORR) is an important electrode reac...
Aprotic alkali metal–oxygen batteries require reversible formation of metal superoxide or peroxide o...
The electroreduction of O_2 to H_2O in aqueous acid at potentials close to the thermodynamically pe...
Lithium-oxygen (Li-O2) batteries employing a lightweight and gaseous oxygen cathode have been spotli...
Nonaqueous lithium–oxygen (Li–O2) batteries are regarded as a promising electrochemical energy stora...
Abstract The superoxide disproportionation reaction is a key step in the chemistry of aprotic metal ...
The activation of molecular oxygen is important in diverse areas from respiration chain in biology t...
It is becoming increasingly clear that current lithium-ion battery technology does not possess a gra...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...
The discovery of eective catalysts is an important step towards achieving Li–O2 batteries with long ...
Non-aqueous metal–oxygen batteries depend critically on the reversible formation/decomposition of me...
Research on alternative energy harvesting technologies, conversion and storage systems with high eff...
Governing the fundamental reaction in lithium-oxygen batteries is vital to realizing their potential...
International audienceAprotic alkali metal-oxygen batteries require reversible formation of metal su...
Aprotic alkali metal-oxygen batteries require reversible formation of metal superoxide or peroxide o...
© 2015 American Chemical Society. The oxygen reduction reaction (ORR) is an important electrode reac...
Aprotic alkali metal–oxygen batteries require reversible formation of metal superoxide or peroxide o...
The electroreduction of O_2 to H_2O in aqueous acid at potentials close to the thermodynamically pe...
Lithium-oxygen (Li-O2) batteries employing a lightweight and gaseous oxygen cathode have been spotli...
Nonaqueous lithium–oxygen (Li–O2) batteries are regarded as a promising electrochemical energy stora...
Abstract The superoxide disproportionation reaction is a key step in the chemistry of aprotic metal ...
The activation of molecular oxygen is important in diverse areas from respiration chain in biology t...
It is becoming increasingly clear that current lithium-ion battery technology does not possess a gra...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...
The discovery of eective catalysts is an important step towards achieving Li–O2 batteries with long ...
Non-aqueous metal–oxygen batteries depend critically on the reversible formation/decomposition of me...
Research on alternative energy harvesting technologies, conversion and storage systems with high eff...