In lithium–oxygen batteries, the solubility of LiO2 intermediates in the electrolyte regulates the formation routes of the Li2O2 discharge product. High-donor-number electrolytes with a high solubility of LiO2 tend to promote the formation of Li2O2 large particles following the solution route, which eventually benefits the cell capacity and cycle life. Here, we propose that facet engineering of cathode catalysts could be another direction in tuning the formation routes of Li2O2. In this work, β-MnO2 crystals with high occupancies of {111} or {100} facets were adopted as cathode catalysts in Li–O2 batteries with a tetra(ethylene)glycol dimethyl ether electrolyte. The {111}-dominated β-MnO2 catalyzed the formation of the Li2O2 discharge produ...
When lithium–oxygen batteries discharge, O2 is reduced at the cathode to form solid Li2O2. Underst...
When lithium–oxygen batteries discharge, O2 is reduced at the cathode to form solid Li2O2. Underst...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...
Nonaqueous lithium–oxygen (Li–O2) batteries are regarded as a promising electrochemical energy stora...
The electrochemical behaviour of MnO2 nanorod and Super P carbon based Li-O2 battery cathodes in wat...
Li–O<sub>2</sub> batteries provide high-capacity energy storage, but for aprotic Li–O<sub>2</sub> ba...
Superoxide (LiO2) formation on charging is one of the major causes of poor cycle life of Li–O2 batte...
Li-rich Mn-based oxides (LRMO) are promising cathode materials to build next-generation lithium-ion ...
Current lithium-ion battery energy storage is restricted by the positive intercalation electrode, ge...
Highly crystalline α-MnO2 is synthesized by facile reduction of KMnO4 in acidic solution. The obtain...
Chemically prepared lambda-MnO2 has not been intensively studied as a material for metal-air batteri...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
Highly crystalline α-MnO2 is synthesized by facile reduction of KMnO4 in acidic solution. The obtain...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
Capacity, rate performance, and cycle life of aprotic Li-O2 batteries critically depend on reversibl...
When lithium–oxygen batteries discharge, O2 is reduced at the cathode to form solid Li2O2. Underst...
When lithium–oxygen batteries discharge, O2 is reduced at the cathode to form solid Li2O2. Underst...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...
Nonaqueous lithium–oxygen (Li–O2) batteries are regarded as a promising electrochemical energy stora...
The electrochemical behaviour of MnO2 nanorod and Super P carbon based Li-O2 battery cathodes in wat...
Li–O<sub>2</sub> batteries provide high-capacity energy storage, but for aprotic Li–O<sub>2</sub> ba...
Superoxide (LiO2) formation on charging is one of the major causes of poor cycle life of Li–O2 batte...
Li-rich Mn-based oxides (LRMO) are promising cathode materials to build next-generation lithium-ion ...
Current lithium-ion battery energy storage is restricted by the positive intercalation electrode, ge...
Highly crystalline α-MnO2 is synthesized by facile reduction of KMnO4 in acidic solution. The obtain...
Chemically prepared lambda-MnO2 has not been intensively studied as a material for metal-air batteri...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
Highly crystalline α-MnO2 is synthesized by facile reduction of KMnO4 in acidic solution. The obtain...
A primary goal in rechargeable battery research is developing batteries with higher specific energie...
Capacity, rate performance, and cycle life of aprotic Li-O2 batteries critically depend on reversibl...
When lithium–oxygen batteries discharge, O2 is reduced at the cathode to form solid Li2O2. Underst...
When lithium–oxygen batteries discharge, O2 is reduced at the cathode to form solid Li2O2. Underst...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...