Succinonitrile (N C-CH2-CH2-C N) is a good ionic conductor, when doped with an ionic compound, at room temperature, where it is in its plastic crystalline phase (Long et al. Solid State Ionics 2003, 161. 105: Alarco et al. Nat. Mater. 2004, 3, 476). We report on the relaxational dynamics of the plastic phase near the two first-order phase transitions and on the effect of dissolving a salt in the plastic matrix by quasi-elastic neutron scattering. At 240 K, the three observed relaxations are localized and we can describe their dynamics (iota approximate to 1.7, 17, and 140 ps) to a certain extent from a model using a single molecule that was proposed by Bee et al. allowing for all conformations in its unit cell (space group IM3M). The extent...
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...
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...
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...
We study the temperature-dependent molecular dynamics, ion conduction, and phase behavior of plastic...
Influence of succinonitrile (SN) dynamics on ion transport in SN-lithium perchlorate (LiClO4) electr...
Plastic crystals are currently discussed as matrices for highly conducting materials. Among them, mi...
Ion transport in a recently demonstrated promising soft matter solid plastic-polymer electrolyte is ...
Important issues of water and thermal history affecting ion transport in a representative plastic cr...
A proton wide line n.m.r. study of solid succinonitrile has been undertaken using a high field F.T. ...
Doping of lithium salts into the plastic crystal phase of succinonitrile does significantly increase...
Doping of lithium salts and acids into the plastic crystal phase of succinonitrile has shown for the...
Ion transport mechanism in lithium perchlorate (LiClO4)-succinonitrile (SN), a prototype of plastic...
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...
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...
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...
We study the temperature-dependent molecular dynamics, ion conduction, and phase behavior of plastic...
Influence of succinonitrile (SN) dynamics on ion transport in SN-lithium perchlorate (LiClO4) electr...
Plastic crystals are currently discussed as matrices for highly conducting materials. Among them, mi...
Ion transport in a recently demonstrated promising soft matter solid plastic-polymer electrolyte is ...
Important issues of water and thermal history affecting ion transport in a representative plastic cr...
A proton wide line n.m.r. study of solid succinonitrile has been undertaken using a high field F.T. ...
Doping of lithium salts into the plastic crystal phase of succinonitrile does significantly increase...
Doping of lithium salts and acids into the plastic crystal phase of succinonitrile has shown for the...
Ion transport mechanism in lithium perchlorate (LiClO4)-succinonitrile (SN), a prototype of plastic...
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...
High salt concentration has been shown to induce increased electrochemical stability in organic solv...