Organic plastic crystalline soft matter ion conductors are interesting alternatives to liquid electrolytes in electrochemical storage devices such as lithium-ion batteries. The solvent dynamics plays a major role in determining the ion transport in plastic crystalline ion conductors. We present here an analysis of the frequency-dependent ionic conductivity of succinonitrile-based plastic crystalline ion conductors at varying salt composition (0.005 to 1 M) and temperature (−20 to 60 °C) using time–temperature superposition principle (TTSP). The main motivation of the work has been to establish comprehensive insight into the ion transport mechanism from a single method viz. impedance spectroscopy rather than employing cluster of differe...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
This review article provides a deep insight into the ion conduction mechanism in polymer electrolyte...
Dielectric response and ac conductivity analysis of an ionically conducting polymer film based on po...
Organic plastic crystalline soft matter ion conductors are interesting alternatives to liquid electr...
A detailed impedance spectroscopy study, together with thermal analysis, was carried out on polymer ...
We discuss here the time temperature scaling and dielectric modeling of the variation of single-ion ...
Ion transport in a recently demonstrated promising soft matter solid plastic-polymer electrolyte is ...
Solid polymer electrolyte films (SPEs) based on poly(methyl methacrylate) are prepared using a solut...
Copyright © 2020 American Chemical Society. Understanding the mechanisms controlling ionic conductiv...
Doping of lithium salts and acids into the plastic crystal phase of succinonitrile has shown for the...
We discuss here the time–temperature scaling and dielectric modeling of the variation of single-ion ...
A detailed impedance spectroscopy study at ambient temperature was carried out on polymer electrolyt...
We study the temperature-dependent molecular dynamics, ion conduction, and phase behavior of plastic...
Organic ionic plastic crystals (OIPCs) appear as promising materials to replace traditional liquid e...
Solid polymer electrolytes are key components in many electrochemical devices. For an in-depth study...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
This review article provides a deep insight into the ion conduction mechanism in polymer electrolyte...
Dielectric response and ac conductivity analysis of an ionically conducting polymer film based on po...
Organic plastic crystalline soft matter ion conductors are interesting alternatives to liquid electr...
A detailed impedance spectroscopy study, together with thermal analysis, was carried out on polymer ...
We discuss here the time temperature scaling and dielectric modeling of the variation of single-ion ...
Ion transport in a recently demonstrated promising soft matter solid plastic-polymer electrolyte is ...
Solid polymer electrolyte films (SPEs) based on poly(methyl methacrylate) are prepared using a solut...
Copyright © 2020 American Chemical Society. Understanding the mechanisms controlling ionic conductiv...
Doping of lithium salts and acids into the plastic crystal phase of succinonitrile has shown for the...
We discuss here the time–temperature scaling and dielectric modeling of the variation of single-ion ...
A detailed impedance spectroscopy study at ambient temperature was carried out on polymer electrolyt...
We study the temperature-dependent molecular dynamics, ion conduction, and phase behavior of plastic...
Organic ionic plastic crystals (OIPCs) appear as promising materials to replace traditional liquid e...
Solid polymer electrolytes are key components in many electrochemical devices. For an in-depth study...
International audienceThe development of nonflammable, chemically and thermally stable electrolytes ...
This review article provides a deep insight into the ion conduction mechanism in polymer electrolyte...
Dielectric response and ac conductivity analysis of an ionically conducting polymer film based on po...