The discovery of effective catalysts is an important step towards achieving Li-O-2 batteries with long cycle life and high round-trip efficiency. Soluble-type catalysts or redox mediators (RMs) possess great advantages over conventional solid catalysts, generally exhibiting much higher efficiency. Here, we select a series of organic RM candidates as a model system to identify the key descriptor in determining the catalytic activities and stabilities in Li-O-2 cells. It is revealed that the level of ionization energies, readily available parameters from a database of the molecules, can serve such a role when comparing with the formation energy of Li2O2 and the highest occupied molecular orbital energy of the electrolyte. It is demonstrated t...
Governing the fundamental reaction in lithium-oxygen batteries is vital to realizing their potential...
Electrochemical processes in Li-O2 batteries benefit from the action of soluble electrocatalysts (re...
Nonaqueous lithium–oxygen (Li–O2) batteries are regarded as a promising electrochemical energy stora...
The discovery of eective catalysts is an important step towards achieving Li–O2 batteries with long ...
Lithium-oxygen (Li-O2) batteries employing a lightweight and gaseous oxygen cathode have been spotli...
Despite the exceptionally large theoretical energy density of lithium-oxygen batteries, their high c...
The recent introduction of redox mediators as soluble catalysts in electrolytes has aimed at overcom...
The use of redox mediators (RMs) effectively reduces the high polarization of lithium-oxygen batteri...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...
ABSTRACT: Unraveling the fundamentals of Li-O2 battery chemistry is crucial to develop practical cel...
It is highly required to develop high specific energy density battery systems for the development of...
It is becoming increasingly clear that current lithium-ion battery technology does not possess a gra...
After many years of successful and disappointing results, the field of Li–O2 research seems to...
Aprotic lithium-oxygen batteries (LOBs) have much higher energy density compared to today???s lithiu...
Despite the high theoretical energy density, the realization of lithium-oxygen batteries with practi...
Governing the fundamental reaction in lithium-oxygen batteries is vital to realizing their potential...
Electrochemical processes in Li-O2 batteries benefit from the action of soluble electrocatalysts (re...
Nonaqueous lithium–oxygen (Li–O2) batteries are regarded as a promising electrochemical energy stora...
The discovery of eective catalysts is an important step towards achieving Li–O2 batteries with long ...
Lithium-oxygen (Li-O2) batteries employing a lightweight and gaseous oxygen cathode have been spotli...
Despite the exceptionally large theoretical energy density of lithium-oxygen batteries, their high c...
The recent introduction of redox mediators as soluble catalysts in electrolytes has aimed at overcom...
The use of redox mediators (RMs) effectively reduces the high polarization of lithium-oxygen batteri...
For years, the aprotic Li–O2 battery suffered from a severe capacity–current trade-off that would be...
ABSTRACT: Unraveling the fundamentals of Li-O2 battery chemistry is crucial to develop practical cel...
It is highly required to develop high specific energy density battery systems for the development of...
It is becoming increasingly clear that current lithium-ion battery technology does not possess a gra...
After many years of successful and disappointing results, the field of Li–O2 research seems to...
Aprotic lithium-oxygen batteries (LOBs) have much higher energy density compared to today???s lithiu...
Despite the high theoretical energy density, the realization of lithium-oxygen batteries with practi...
Governing the fundamental reaction in lithium-oxygen batteries is vital to realizing their potential...
Electrochemical processes in Li-O2 batteries benefit from the action of soluble electrocatalysts (re...
Nonaqueous lithium–oxygen (Li–O2) batteries are regarded as a promising electrochemical energy stora...