The Li-O-2 battery holds great promise as an ultra-high-energydensity device. However, its limited rechargeability and low energy efficiency remain key barriers to its practical application. Herein, we demonstrate that the ideal electrode morphology design combined with effective catalyst decoration can enhance the rechargeability of the Li-O-2 battery over 100 cycles with full discharge and charge. An aligned carbon structure with a hierarchical micro-nano-mesh ensures facile accessibility of reaction products and provides the optimal catalytic conditions for the Pt catalyst. The new electrode is highly reversible even at the extremely high current rate of 2 A g(-1). Moreover, we observed clearly distinct morphologies of discharge products...
The surface structure of solid catalysts has been regarded as a critical descriptor for determining ...
Reduced global warming is the goal of carbon neutrality. Therefore, batteries are considered to be t...
By replacing the intercalation electrode with a porous electrode and allowing lithium to react direc...
The Li-O-2 battery holds great promise as an ultra-high-energydensity device. However, its limited r...
The Li–O2 battery holds great promise as an ultra-high-energydensity device. However, its limited re...
The lithium-oxygen battery has the potential to deliver extremely high energy densities; however, th...
The lithium–oxygen battery has the potential to deliver extremely high energy densities; however, th...
The optimal design of air-electrodes is one of the important keys to achieve the high rechargeabilit...
Current lithium-ion battery energy storage is restricted by the positive intercalation electrode, ge...
The optimal design of air-electrodes is one of the important keys to achieve the high rechargeabilit...
The non-aqueous lithium oxygen battery has been considered as one of the most promising energy stora...
The rechargeable lithium-oxygen battery is an electrochemical energy storage device based on the con...
Lithium oxygen batteries (LOBs) are a very promising upcoming technology which however still suffers...
Rechargeable aprotic lithium-oxygen (Li-O2) batteries have attracted significant interest in recent ...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. One of the major challenges to develop high-perfo...
The surface structure of solid catalysts has been regarded as a critical descriptor for determining ...
Reduced global warming is the goal of carbon neutrality. Therefore, batteries are considered to be t...
By replacing the intercalation electrode with a porous electrode and allowing lithium to react direc...
The Li-O-2 battery holds great promise as an ultra-high-energydensity device. However, its limited r...
The Li–O2 battery holds great promise as an ultra-high-energydensity device. However, its limited re...
The lithium-oxygen battery has the potential to deliver extremely high energy densities; however, th...
The lithium–oxygen battery has the potential to deliver extremely high energy densities; however, th...
The optimal design of air-electrodes is one of the important keys to achieve the high rechargeabilit...
Current lithium-ion battery energy storage is restricted by the positive intercalation electrode, ge...
The optimal design of air-electrodes is one of the important keys to achieve the high rechargeabilit...
The non-aqueous lithium oxygen battery has been considered as one of the most promising energy stora...
The rechargeable lithium-oxygen battery is an electrochemical energy storage device based on the con...
Lithium oxygen batteries (LOBs) are a very promising upcoming technology which however still suffers...
Rechargeable aprotic lithium-oxygen (Li-O2) batteries have attracted significant interest in recent ...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. One of the major challenges to develop high-perfo...
The surface structure of solid catalysts has been regarded as a critical descriptor for determining ...
Reduced global warming is the goal of carbon neutrality. Therefore, batteries are considered to be t...
By replacing the intercalation electrode with a porous electrode and allowing lithium to react direc...