The electrocatalysis of oxygen reduction reactions (ORR) in non-aqueous electrolytes is coupled to the ability of the solvents to modulate the Lewis acidity of Li+. This is accomplished through chemical interactions of Li+ with the solvent to form acid-base complexes of the general formula, Li(solvent)n+, which determine the relative stability of the ORR intermediates and the final products formed. In high Donor Number solvents such as dimethyl sulfoxide (DMSO), the ORR proceeds via an outer Helmholtz plane (OHP) reaction pathway, conforming to a homogeneous catalysis of the reaction, irrespective of the presence of a catalyst in the cathode. In low Donor Number solvents exemplified by tetraethylene glycol dimethyl ether (TEGDME) and CH3CN,...
© 2015 American Chemical Society. The oxygen reduction reaction (ORR) is an important electrode reac...
Oxygen reduction reaction (ORR) is crucial to the development of proton exchange membrane fuel cells...
The seemingly simple reaction of Li-O-2 batteries involving lithium and oxygen makes this chemistry ...
Non-aqueous electrolytes play a prominent role in the redox reactions of the oxygen electrode in the...
This work reports a detailed characterization of the reduction of oxygen in pyrrolidinium-based ioni...
Unlocking the true energy capabilities of the lithium metal negative electrode in a lithium battery ...
The kinetics and thermodynamics of oxygen reduction reactions (ORR) in aprotic Li electrolyte were s...
The oxygen reduction reaction by decamethylferrocene (DMFc), triggered by hydrophilic metallic catio...
The high theoretical energy density of lithium–oxygen batteries brings the promise of higher perform...
Rechargeable lithium-air batteries have the potential to provide ≈3 times higher specific energy of ...
International audienceSeveral problems arise at the O2 (positive) electrode in the Li-air battery, i...
The choice of electrolyte solvent is expected to play a key role in influencing the lithium-oxygen b...
Oxygen reduction reaction (ORR) on carbon in lithium-ion-containing nonaqueous electrolytes is suppo...
The influence of nonaqueous electrolytes has been applied in the rechargeable Li-air battery. Discha...
Lithium–air (Li–air) battery works essentially based on the interfacial reaction of 2Li + O<sub>2</s...
© 2015 American Chemical Society. The oxygen reduction reaction (ORR) is an important electrode reac...
Oxygen reduction reaction (ORR) is crucial to the development of proton exchange membrane fuel cells...
The seemingly simple reaction of Li-O-2 batteries involving lithium and oxygen makes this chemistry ...
Non-aqueous electrolytes play a prominent role in the redox reactions of the oxygen electrode in the...
This work reports a detailed characterization of the reduction of oxygen in pyrrolidinium-based ioni...
Unlocking the true energy capabilities of the lithium metal negative electrode in a lithium battery ...
The kinetics and thermodynamics of oxygen reduction reactions (ORR) in aprotic Li electrolyte were s...
The oxygen reduction reaction by decamethylferrocene (DMFc), triggered by hydrophilic metallic catio...
The high theoretical energy density of lithium–oxygen batteries brings the promise of higher perform...
Rechargeable lithium-air batteries have the potential to provide ≈3 times higher specific energy of ...
International audienceSeveral problems arise at the O2 (positive) electrode in the Li-air battery, i...
The choice of electrolyte solvent is expected to play a key role in influencing the lithium-oxygen b...
Oxygen reduction reaction (ORR) on carbon in lithium-ion-containing nonaqueous electrolytes is suppo...
The influence of nonaqueous electrolytes has been applied in the rechargeable Li-air battery. Discha...
Lithium–air (Li–air) battery works essentially based on the interfacial reaction of 2Li + O<sub>2</s...
© 2015 American Chemical Society. The oxygen reduction reaction (ORR) is an important electrode reac...
Oxygen reduction reaction (ORR) is crucial to the development of proton exchange membrane fuel cells...
The seemingly simple reaction of Li-O-2 batteries involving lithium and oxygen makes this chemistry ...