Glycol ethers, or glymes, have been recognized as good candidates as solvents for lithium-air batteries because they exhibit relatively good stability in the presence of superoxide radicals. Diglyme (bis(2-methoxy-ethyl)ether), in spite of its low donor number, has been found to promote the solution mechanism for the formation of Li2O2 during the discharge reaction, leading to large deposits, that is, high capacities. It has been suggested that lithium salt association in these types of solvents could be responsible for this behavior. Thus, the knowledge of the speciation and transport behavior of lithium salts in these types of solvents is relevant for the optimization of the lithium-air battery performance. In this work, a comprehensive s...
The electrolytes diluted with fluorinated solvents show promising properties toward better battery t...
The choice of optimal electrolytes is crucial for improving the electrochemical performance of a lit...
We report an electrochemical study of end-capped glymes dissolving lithium salts as electrolyte solu...
Glycol ethers, or glymes, have been recognized as good candidates as solvents for lithium–air batter...
New-generation lithium-ion batteries use ionic liquids (ILs) as electrolyte solutions, greatly enhan...
New-generation lithium-ion batteries use ionic liquids (ILs) as electrolyte solutions, greatly enhan...
The reduction in the usage of fossil fuels can be achieved by focusing on the development of high-en...
Lithium-air batteries emerge as an interesting alternative for advanced energy storage devices. The ...
Concentrated solutions of lithium bis(trifluoromethanesulfonyl)imide (LiTFSI) and lithium nitrate (L...
Glycol ethers, or glymes, have been recognized as good candidates as solvents for lithium-air batter...
Up to now, a great deal of research investigations on lithium ion conductors has been carried out, b...
The concept of green in a battery involves the chemical nature of electrodes and electrolytes as wel...
We studied dynamic and structural properties of two lithium conducting salts in the aprotic organic ...
An equimolar mixture of lithium bis(trifluoromethanesulfonyl)amide (Li[TFSA]) and either triglyme...
Mixed electrolytes perform better than single solvent electrolytes in aprotic lithium-O2 batteries i...
The electrolytes diluted with fluorinated solvents show promising properties toward better battery t...
The choice of optimal electrolytes is crucial for improving the electrochemical performance of a lit...
We report an electrochemical study of end-capped glymes dissolving lithium salts as electrolyte solu...
Glycol ethers, or glymes, have been recognized as good candidates as solvents for lithium–air batter...
New-generation lithium-ion batteries use ionic liquids (ILs) as electrolyte solutions, greatly enhan...
New-generation lithium-ion batteries use ionic liquids (ILs) as electrolyte solutions, greatly enhan...
The reduction in the usage of fossil fuels can be achieved by focusing on the development of high-en...
Lithium-air batteries emerge as an interesting alternative for advanced energy storage devices. The ...
Concentrated solutions of lithium bis(trifluoromethanesulfonyl)imide (LiTFSI) and lithium nitrate (L...
Glycol ethers, or glymes, have been recognized as good candidates as solvents for lithium-air batter...
Up to now, a great deal of research investigations on lithium ion conductors has been carried out, b...
The concept of green in a battery involves the chemical nature of electrodes and electrolytes as wel...
We studied dynamic and structural properties of two lithium conducting salts in the aprotic organic ...
An equimolar mixture of lithium bis(trifluoromethanesulfonyl)amide (Li[TFSA]) and either triglyme...
Mixed electrolytes perform better than single solvent electrolytes in aprotic lithium-O2 batteries i...
The electrolytes diluted with fluorinated solvents show promising properties toward better battery t...
The choice of optimal electrolytes is crucial for improving the electrochemical performance of a lit...
We report an electrochemical study of end-capped glymes dissolving lithium salts as electrolyte solu...