Javascript must be enabled to continue!
Transport Properties of Alkali/Alkaline Earth Cations in Ionic-Liquid Based Electrolytes
View through CrossRef
The increasing need of portable electrical resources requires to develop post-Li batteries, in which redox reactions are then based on the different alkali or earth alkaline ions. Keeping in mind the specific advantages of electrolytes based on ionic liquid (electrochemical properties, safety, stability …), this paper focuses on the specific properties of those obtained by mixing alkali or earth alkaline salts (Li + , Na + , K + , Cs + and Mg 2+ ) in a prototypical ionic liquid, the 1-butyl-3-methyl imidazolium bis(trifluoromethyl sulfonyl) imide (BMImTFSI). Transport properties of these electrolytes are deciphered from viscosity, ionic conductivity and individual self-diffusion coefficients. At room temperature, change of electrolyte composition (nature of ion, concentration) induces some large variations of these transport properties. However, if these measurements are scaled towards glass transition temperatures, master curves are obtained with only slight differences between monovalent alkali and divalent earth alkaline ions. Further information is obtained from the Walden approach and evidences that these electrolytes are 'good ionic conductors'. These results are confirmed from self-diffusion coefficients which also allows to retrieve contributions of each species to ionic transport and then dissociation ratio inside these mixtures. Slight differences between alkali and earth alkali ions may be related to solvation mechanisms, as proposed from infrared spectroscopy measurements.
Title: Transport Properties of Alkali/Alkaline Earth Cations in Ionic-Liquid Based Electrolytes
Description:
The increasing need of portable electrical resources requires to develop post-Li batteries, in which redox reactions are then based on the different alkali or earth alkaline ions.
Keeping in mind the specific advantages of electrolytes based on ionic liquid (electrochemical properties, safety, stability …), this paper focuses on the specific properties of those obtained by mixing alkali or earth alkaline salts (Li + , Na + , K + , Cs + and Mg 2+ ) in a prototypical ionic liquid, the 1-butyl-3-methyl imidazolium bis(trifluoromethyl sulfonyl) imide (BMImTFSI).
Transport properties of these electrolytes are deciphered from viscosity, ionic conductivity and individual self-diffusion coefficients.
At room temperature, change of electrolyte composition (nature of ion, concentration) induces some large variations of these transport properties.
However, if these measurements are scaled towards glass transition temperatures, master curves are obtained with only slight differences between monovalent alkali and divalent earth alkaline ions.
Further information is obtained from the Walden approach and evidences that these electrolytes are 'good ionic conductors'.
These results are confirmed from self-diffusion coefficients which also allows to retrieve contributions of each species to ionic transport and then dissociation ratio inside these mixtures.
Slight differences between alkali and earth alkali ions may be related to solvation mechanisms, as proposed from infrared spectroscopy measurements.
Related Results
Diffusion and Ion Conduction in Cation-Conducting Oxide Glasses
Diffusion and Ion Conduction in Cation-Conducting Oxide Glasses
In this Chapter we review knowledge about diffusion and cation conduction in oxide glasses. We first remind the reader in Section 1 of major aspects of the glassy state and recall ...
Theia can arrive late and be oxidized, but not if it is large compared to proto-Earth
Theia can arrive late and be oxidized, but not if it is large compared to proto-Earth
The Moon-forming impact was the most significant event during the accretion of Earth substantially establishing the physical and chemical states of the Earth-Moon system. In the ca...
(Invited) Polymer Electrolytes Based on Ionic Liquids for PEMFC and Lithium Batteries
(Invited) Polymer Electrolytes Based on Ionic Liquids for PEMFC and Lithium Batteries
Ionic liquids (IL) are considered as hi-tech new media with emerging applications as solvents for organic reactions or as electrolytes. The organization degree in these complex flu...
A Study of Lithium Silicon Oxynitride (LiSiON) Deposited By RF Sputtering for All-Solid-State Thin Film Batteries
A Study of Lithium Silicon Oxynitride (LiSiON) Deposited By RF Sputtering for All-Solid-State Thin Film Batteries
At present, we suffer from various environmental issues such as air pollution and rapid weather change. Air pollution is usually caused by the use of fossil fuels. To overcome the ...
Ionic Liquid Enhanced Polymer Elcetrolytes for Environmental Friendly Electric Double Layer Capacitors
Ionic Liquid Enhanced Polymer Elcetrolytes for Environmental Friendly Electric Double Layer Capacitors
In this study we perform the preparation and characterization of poly (vinyl alcohol) (PVA)–added ionic liquid based ion conductors. The polymer electrolyte is incorporated with ma...
Mass Transfer Parameters and Ionic Association of Dual-Cation Electrolyte for Hybrid Capacitor System
Mass Transfer Parameters and Ionic Association of Dual-Cation Electrolyte for Hybrid Capacitor System
[Introduction]
Hybrid capacitors, which combine an activated carbon (AC) electrode with a large-capacity faradic (psuedocapacitive or battery) electrode, are the fo...
Design and Optimization of Alkaline Flooding Formulations
Design and Optimization of Alkaline Flooding Formulations
Abstract
The state-of-the-art for alkaline flooding technology is the injection of combinations of alkalis with synthetic surfactants. Surfactant-enhanced alkaline f...
Introduction to Ionic Liquids
Introduction to Ionic Liquids
Currently, ionic liquids (ILs) is a topic of interest to physical, organic
inorganic chemists as well as biologists due to their unusual physical, chemical, and
biological properti...

