On the basis of computations, the B(CN)4 - (bison) anion is shown to be of interest as a fluorine-free alternative in lithium-conducting electrolytes. Compared to PF6 - the bison anion has an equally high stability toward oxidation, while at the same time offering a large reduction of the lithium-ion pair dissociation energy. The bison anion is readily available in a number of ambient-temperature ionic liquids (ILs). In this work, the Raman spectrum of the IL C2mim [B(CN)4] reveals an almost unperturbed bison anion and, consequently, the effects of the anion on the Raman shifts of C2mim + are also very small. \ua9 2008 The Electrochemical Society
All non-aqueous lithium battery electrolytes are Lewis bases that interact with cations. Unlike wate...
The ionic liquid (IL) N-methyl-N-butylmorpholinium bis(fluorosulfonyl)imide (C4mmor FSI) is examined...
In a world that strives toward greener and more sustainable energy solutions, the need for suitable ...
On the basis of computations, the B(CN)4 - (bison) anion is shown to be of interest as a fluorine-fr...
Based on the atomic postulate, which is now more than 2400 years old, scientists have developed very...
Energy storage is crucial to realize a new global energy paradigm based on renewable energy sources....
The role of B(CN)(4)(-) (Bison) as a component of battery electrolytes is addressed by investigating...
Given their relevant physicochemical properties, ionic liquids (ILs) are attracting great attention ...
A new family of anion receptors based on boron compounds has been synthesized. These compounds can b...
Ab initio calculations reveal the extraordinary low lithium ion affinities of the orthoborate anions...
Boronium cation-based ionic liquids (ILs) have demonstrated high thermal stability and a >5.8 V e...
The intrinsic anion oxidation potential (Delta E-v) and lithium ion pair dissociation energy (Delta ...
© 2020 American Chemical Society Here, we investigate the physicochemical and electrochemical proper...
A novel anion concept of pseudo-delocalized anions, anions with distinct positive and negative charg...
In binary ionic liquid/Li salt electrolytes for lithium‐ion batteries the use of asymmetric anions r...
All non-aqueous lithium battery electrolytes are Lewis bases that interact with cations. Unlike wate...
The ionic liquid (IL) N-methyl-N-butylmorpholinium bis(fluorosulfonyl)imide (C4mmor FSI) is examined...
In a world that strives toward greener and more sustainable energy solutions, the need for suitable ...
On the basis of computations, the B(CN)4 - (bison) anion is shown to be of interest as a fluorine-fr...
Based on the atomic postulate, which is now more than 2400 years old, scientists have developed very...
Energy storage is crucial to realize a new global energy paradigm based on renewable energy sources....
The role of B(CN)(4)(-) (Bison) as a component of battery electrolytes is addressed by investigating...
Given their relevant physicochemical properties, ionic liquids (ILs) are attracting great attention ...
A new family of anion receptors based on boron compounds has been synthesized. These compounds can b...
Ab initio calculations reveal the extraordinary low lithium ion affinities of the orthoborate anions...
Boronium cation-based ionic liquids (ILs) have demonstrated high thermal stability and a >5.8 V e...
The intrinsic anion oxidation potential (Delta E-v) and lithium ion pair dissociation energy (Delta ...
© 2020 American Chemical Society Here, we investigate the physicochemical and electrochemical proper...
A novel anion concept of pseudo-delocalized anions, anions with distinct positive and negative charg...
In binary ionic liquid/Li salt electrolytes for lithium‐ion batteries the use of asymmetric anions r...
All non-aqueous lithium battery electrolytes are Lewis bases that interact with cations. Unlike wate...
The ionic liquid (IL) N-methyl-N-butylmorpholinium bis(fluorosulfonyl)imide (C4mmor FSI) is examined...
In a world that strives toward greener and more sustainable energy solutions, the need for suitable ...