A strong relationship between the surface structure and the redox activity of Li2O2 is visualized directly using scanning electrochemical cell microscopy, employing a dual-barrel nanopipette containing a unique gel polymer electrolyte. These measurements reveal considerable local heterogeneity with significantly enhanced electrochemical activity at toroidal Li2O2 structures when compared to the conformal layer that is usually formed on the cathode of Li–O2 batteries
Via designing a facile microscale all-solid-state lithium oxygen battery system constructed in an en...
The O2/Li2O2 electrode reaction has been studied on low surface area Au electrodes in three solvent-...
ABSTRACT: Unraveling the fundamentals of Li-O2 battery chemistry is crucial to develop practical cel...
A strong relationship between the surface structure and the redox activity of Li2O2 is visualized di...
A strong relationship between the surface structure and the redox activity of Li2O2 is visualized di...
An ongoing challenge with lithium-oxygen (Li-O2) batteries is in deciphering the oxygen evolution re...
An ongoing challenge with lithium-oxygen (Li-O-2) batteries is in deciphering the oxygen evolution r...
Li-O-2 battery is one of the important next-generation energy storage systems, as it can potentially...
The O2/Li2O2 electrode reaction has been studied on low surface area HOPG electrodes in 0.1 M LiPF6 ...
The oxygen reduction reaction and oxygen evolution reaction (ORR-OER) in DMSO were investigated by c...
Obtaining in situ characteristics of Lithium metal batteries (LMBs) is extremely important for under...
The lack of fundamental understanding of the oxygen reduction and oxygen evolution in nonaqueous ele...
Observing the cathode interface in Li–O<sub>2</sub> batteries during cycling is necessary to improve...
Ex situ atomic force microscopy (AFM) has been used to study the morphology of oxygen reduction prod...
Titanium dioxide is playing an increasingly significant role in easing environmental and energy conc...
Via designing a facile microscale all-solid-state lithium oxygen battery system constructed in an en...
The O2/Li2O2 electrode reaction has been studied on low surface area Au electrodes in three solvent-...
ABSTRACT: Unraveling the fundamentals of Li-O2 battery chemistry is crucial to develop practical cel...
A strong relationship between the surface structure and the redox activity of Li2O2 is visualized di...
A strong relationship between the surface structure and the redox activity of Li2O2 is visualized di...
An ongoing challenge with lithium-oxygen (Li-O2) batteries is in deciphering the oxygen evolution re...
An ongoing challenge with lithium-oxygen (Li-O-2) batteries is in deciphering the oxygen evolution r...
Li-O-2 battery is one of the important next-generation energy storage systems, as it can potentially...
The O2/Li2O2 electrode reaction has been studied on low surface area HOPG electrodes in 0.1 M LiPF6 ...
The oxygen reduction reaction and oxygen evolution reaction (ORR-OER) in DMSO were investigated by c...
Obtaining in situ characteristics of Lithium metal batteries (LMBs) is extremely important for under...
The lack of fundamental understanding of the oxygen reduction and oxygen evolution in nonaqueous ele...
Observing the cathode interface in Li–O<sub>2</sub> batteries during cycling is necessary to improve...
Ex situ atomic force microscopy (AFM) has been used to study the morphology of oxygen reduction prod...
Titanium dioxide is playing an increasingly significant role in easing environmental and energy conc...
Via designing a facile microscale all-solid-state lithium oxygen battery system constructed in an en...
The O2/Li2O2 electrode reaction has been studied on low surface area Au electrodes in three solvent-...
ABSTRACT: Unraveling the fundamentals of Li-O2 battery chemistry is crucial to develop practical cel...