Temperature dependent Brillouin scattering studies have been performed to ascertain the influence of solvent dynamics on ion-transport in succinonitrile-lithium salt plastic crystalline electrolytes. Though very rarely employed, we observe that Brillouin spectroscopy is an invaluable tool for investigation of solvent dynamics. Analysis of various acoustic (long wavelength) phonon modes observed in the Brillouin scattering spectra reveal the influence of trans-gauche isomerism and as well as ion-association effects on ion transport. Although pristine SN and dilute SN-LiClO(4) samples show only the bulk longitudinal-acoustic (LA) mode, concentrated SN-LiClO(4) (similar to 0.3-1 M) electrolytes display both the bulk LA mode as well as salt ind...
Nous avons étudié par diffusion Brillouin l'atténuation et la vitesse des ondes hypersoniques dans u...
The molecular dynamics of acetone alkali halide (LiBr and LiI) solutions at different compositions, ...
“Water-in-salt” (WIS) electrolytes exhibit excellent safety and electrochemical performance. However...
Temperature dependent Brillouin scattering studies have been performed to ascertain the influence of...
Temperature dependent Brillouin scattering studies have been performed to ascertain the influence of...
Influence of succinonitrile (SN) dynamics on ion transport in SN-lithium perchlorate (LiClO4) electr...
Important issues of water and thermal history affecting ion transport in a representative plastic cr...
Ion transport mechanism in lithium perchlorate (LiClO4)-succinonitrile (SN), a prototype of plastic...
Succinonitrile (SN) has been demonstrated as an excellent organic plastic crystalline ``solid-like''...
Succinonitrile (SN) has been demonstrated as an excellent organic plastic crystalline “solid-like” s...
Ion transport in a recently demonstrated promising soft matter solid plastic-polymer electrolyte is ...
High salt concentration has been shown to induce increased electrochemical stability in organic solv...
Succinonitrile (N C-CH2-CH2-C N) is a good ionic conductor, when doped with an ionic compound, at ro...
Succinonitrile (N≡C—CH2—CH2—C≡N) is a good ionic conductor, when doped...
We study the temperature-dependent molecular dynamics, ion conduction, and phase behavior of plastic...
Nous avons étudié par diffusion Brillouin l'atténuation et la vitesse des ondes hypersoniques dans u...
The molecular dynamics of acetone alkali halide (LiBr and LiI) solutions at different compositions, ...
“Water-in-salt” (WIS) electrolytes exhibit excellent safety and electrochemical performance. However...
Temperature dependent Brillouin scattering studies have been performed to ascertain the influence of...
Temperature dependent Brillouin scattering studies have been performed to ascertain the influence of...
Influence of succinonitrile (SN) dynamics on ion transport in SN-lithium perchlorate (LiClO4) electr...
Important issues of water and thermal history affecting ion transport in a representative plastic cr...
Ion transport mechanism in lithium perchlorate (LiClO4)-succinonitrile (SN), a prototype of plastic...
Succinonitrile (SN) has been demonstrated as an excellent organic plastic crystalline ``solid-like''...
Succinonitrile (SN) has been demonstrated as an excellent organic plastic crystalline “solid-like” s...
Ion transport in a recently demonstrated promising soft matter solid plastic-polymer electrolyte is ...
High salt concentration has been shown to induce increased electrochemical stability in organic solv...
Succinonitrile (N C-CH2-CH2-C N) is a good ionic conductor, when doped with an ionic compound, at ro...
Succinonitrile (N≡C—CH2—CH2—C≡N) is a good ionic conductor, when doped...
We study the temperature-dependent molecular dynamics, ion conduction, and phase behavior of plastic...
Nous avons étudié par diffusion Brillouin l'atténuation et la vitesse des ondes hypersoniques dans u...
The molecular dynamics of acetone alkali halide (LiBr and LiI) solutions at different compositions, ...
“Water-in-salt” (WIS) electrolytes exhibit excellent safety and electrochemical performance. However...