The electrochemical stability vs. oxidation is a crucial property of anions in order to be suitable as components in lithium-ion batteries. Here the applicability of a number of computational approaches and methods to assess this property, employing a wide selection of DFT functionals, has been studied using the CCSD(T)/CBS method as the reference. In all, the vertical anion oxidation potential, Delta E-v, is a fair way to calculate the stability vs. oxidation, however, a functional of at least hybrid quality is recommended. In addition, the chemical hardness, eta, is identified as a novel approach to calculate the stability vs. oxidation
International audienceThe use of anion-inserting organic electrode materials represents an interesti...
The cathodic and anodic stabilities of room-temperature ionic liquids (ILs) are important factors in...
New lithium imide salts have been studied using computational chemistry methods. Intrinsic anion oxi...
The electrochemical stability vs. oxidation is a crucial property of anions in order to be suitable ...
Electrochemical stability windows of electrolytes largely determine the limitations of operating reg...
Lithium-ion batteries are omnipresent in modern electronics. They can be found in laptops, mobile ph...
<p>Lithium-ion batteries are omnipresent in modern electronics. They can be found in laptops, mobile...
Electrochemical stability windows of electrolytes largely determine the limitations of operating reg...
Electrolytes are an integral part of any electrochemical energy storage systems, including batteries...
Electrochemical stability windows of electrolytes largely determine the limitations of operating reg...
Energy storage is crucial to realize a new global energy paradigm based on renewable energy sources....
The oxidative stability and initial oxidation-induced decomposition reactions of common electrolyte ...
Conventional battery cathodes are limited by the redox capacity of the transition metal components. ...
The intrinsic anion oxidation potential (Delta E-v) and lithium ion pair dissociation energy (Delta ...
A novel anion concept of pseudo-delocalized anions, anions with distinct positive and negative charg...
International audienceThe use of anion-inserting organic electrode materials represents an interesti...
The cathodic and anodic stabilities of room-temperature ionic liquids (ILs) are important factors in...
New lithium imide salts have been studied using computational chemistry methods. Intrinsic anion oxi...
The electrochemical stability vs. oxidation is a crucial property of anions in order to be suitable ...
Electrochemical stability windows of electrolytes largely determine the limitations of operating reg...
Lithium-ion batteries are omnipresent in modern electronics. They can be found in laptops, mobile ph...
<p>Lithium-ion batteries are omnipresent in modern electronics. They can be found in laptops, mobile...
Electrochemical stability windows of electrolytes largely determine the limitations of operating reg...
Electrolytes are an integral part of any electrochemical energy storage systems, including batteries...
Electrochemical stability windows of electrolytes largely determine the limitations of operating reg...
Energy storage is crucial to realize a new global energy paradigm based on renewable energy sources....
The oxidative stability and initial oxidation-induced decomposition reactions of common electrolyte ...
Conventional battery cathodes are limited by the redox capacity of the transition metal components. ...
The intrinsic anion oxidation potential (Delta E-v) and lithium ion pair dissociation energy (Delta ...
A novel anion concept of pseudo-delocalized anions, anions with distinct positive and negative charg...
International audienceThe use of anion-inserting organic electrode materials represents an interesti...
The cathodic and anodic stabilities of room-temperature ionic liquids (ILs) are important factors in...
New lithium imide salts have been studied using computational chemistry methods. Intrinsic anion oxi...