A novel anion concept of pseudo-delocalized anions, anions with distinct positive and negative charge regions, has been studied by a computer aided synthesis using DFT calculations. With the aim to find safer and better performing lithium salts for lithium battery electrolytes two factors have been evaluated: the cation-anion interaction strength via the dissociation reaction LiAn (sic) Li+ + An(-) and the anion oxidative stability via a vertical ionisation from anion to radical. Based on our computational results some of these anions have shown promise to perform well as lithium salts for modern lithium batteries and should be interesting synthetic targets for future research
Ab initio calculations reveal the extraordinary low lithium ion affinities of the orthoborate anions...
All non-aqueous lithium battery electrolytes are Lewis bases that interact with cations. Unlike wate...
International audienceThe increasing need for energy storage has been the motivation for intensive r...
Based on the atomic postulate, which is now more than 2400 years old, scientists have developed very...
Lithium-ion batteries are omnipresent in modern electronics. They can be found in laptops, mobile ph...
A new anion design concept, based on combining a boron atom as the central atom and conjugated syste...
Energy storage is crucial to realize a new global energy paradigm based on renewable energy sources....
Lithium-ion batteries are omnipresent in modern electronics. They can be found in laptops, mobile ph...
New lithium imide salts have been studied using computational chemistry methods. Intrinsic anion oxi...
The complexation of simple anions (F - and Cl - ) to different neutral species, anion-coordinating ...
Nature helps generate multiply charged negative ions in abundance. Such negatively charged ions are ...
Mixing the standard battery salt LiTFSI with various Li-salts of novel pseudo-delocalized organic an...
Sodium-ion batteries, the sodium counterpart of the ubiquitous lithium-ion batteries, are currently ...
This paper is a small review of the use of computer simulations and especially the use of standard q...
The solvation of lithium salts in ionic liquids (ILs) leads to the creation of a lithium ion carryin...
Ab initio calculations reveal the extraordinary low lithium ion affinities of the orthoborate anions...
All non-aqueous lithium battery electrolytes are Lewis bases that interact with cations. Unlike wate...
International audienceThe increasing need for energy storage has been the motivation for intensive r...
Based on the atomic postulate, which is now more than 2400 years old, scientists have developed very...
Lithium-ion batteries are omnipresent in modern electronics. They can be found in laptops, mobile ph...
A new anion design concept, based on combining a boron atom as the central atom and conjugated syste...
Energy storage is crucial to realize a new global energy paradigm based on renewable energy sources....
Lithium-ion batteries are omnipresent in modern electronics. They can be found in laptops, mobile ph...
New lithium imide salts have been studied using computational chemistry methods. Intrinsic anion oxi...
The complexation of simple anions (F - and Cl - ) to different neutral species, anion-coordinating ...
Nature helps generate multiply charged negative ions in abundance. Such negatively charged ions are ...
Mixing the standard battery salt LiTFSI with various Li-salts of novel pseudo-delocalized organic an...
Sodium-ion batteries, the sodium counterpart of the ubiquitous lithium-ion batteries, are currently ...
This paper is a small review of the use of computer simulations and especially the use of standard q...
The solvation of lithium salts in ionic liquids (ILs) leads to the creation of a lithium ion carryin...
Ab initio calculations reveal the extraordinary low lithium ion affinities of the orthoborate anions...
All non-aqueous lithium battery electrolytes are Lewis bases that interact with cations. Unlike wate...
International audienceThe increasing need for energy storage has been the motivation for intensive r...