Ternary systems consisting of polymers, lithium salts, and ionic liquids (ILs) are promising materials for the development of next-generation lithium batteries. The ternary systems combine the advantages of polymer-salt and IL-salt systems, thus providing media with high ionic conductivity and solid-like mechanical properties. In this work, we apply nuclear magnetic resonance 1H microimaging [magnetic resonance imaging (MRI)] techniques and molecular dynamics (MD) simulations to study the translational and rotational dynamics of the N-butyl-N-methylpyrrolidinium (PYR14) cation in poly(ethylene oxide) (PEO) matrices containing the lithium bis(trifluoromethanesulfonyl) imide salt (LiTFSI) and the PYR14TFSI IL. The analysis of diffusion-weight...
This project was a molecular dynamics study of the relevant issues associated with the structure and...
We present a theoretical study combining molecular dynamics (MD) simulations with an analytical lith...
Lithium salts dissolved in ionic liquids (ILs) are interesting alternatives to the commonly used ele...
Ternary systems consisting of polymers, lithium salts, and ionic liquids (ILs) are promising materia...
Multinuclear (i.e., 7Li, 19F, and 1H) NMR relaxation and pulsed field gradient spin-echo (PGSE) NMR ...
International audienceABSTRACT Solid electrolyte materials have the potential to improve performance...
The lithium transport mechanism in ternary polymer electrolytes, consisting of PEO<sub>20</sub>LiTFS...
The quest for safe and high-performance polymer electrolytes in lithium-ion batteries (LIBs) has led...
Dans les matériaux de batterie, le contrôle de la mobilité des cations lithium est la clé pour repou...
We present an extensive molecular dynamics (MD) simulation study of the lithium ion transport in ter...
Two ternary polymer gel electrolyte systems are compared, containing either polyethylene oxide (PEO)...
Solid polymer electrolytes have the potential to improve manufacturability, performance, and safety ...
International audienceMagic‐angle‐spinning (MAS) enhances sensitivity and resolution in solid‐state ...
Brinkkotter M, Geisler R, Großkopf S, Hellweg T, Schonhoff M. Influence of Li-Salt on the Mesophases...
This project was a molecular dynamics study of the relevant issues associated with the structure and...
We present a theoretical study combining molecular dynamics (MD) simulations with an analytical lith...
Lithium salts dissolved in ionic liquids (ILs) are interesting alternatives to the commonly used ele...
Ternary systems consisting of polymers, lithium salts, and ionic liquids (ILs) are promising materia...
Multinuclear (i.e., 7Li, 19F, and 1H) NMR relaxation and pulsed field gradient spin-echo (PGSE) NMR ...
International audienceABSTRACT Solid electrolyte materials have the potential to improve performance...
The lithium transport mechanism in ternary polymer electrolytes, consisting of PEO<sub>20</sub>LiTFS...
The quest for safe and high-performance polymer electrolytes in lithium-ion batteries (LIBs) has led...
Dans les matériaux de batterie, le contrôle de la mobilité des cations lithium est la clé pour repou...
We present an extensive molecular dynamics (MD) simulation study of the lithium ion transport in ter...
Two ternary polymer gel electrolyte systems are compared, containing either polyethylene oxide (PEO)...
Solid polymer electrolytes have the potential to improve manufacturability, performance, and safety ...
International audienceMagic‐angle‐spinning (MAS) enhances sensitivity and resolution in solid‐state ...
Brinkkotter M, Geisler R, Großkopf S, Hellweg T, Schonhoff M. Influence of Li-Salt on the Mesophases...
This project was a molecular dynamics study of the relevant issues associated with the structure and...
We present a theoretical study combining molecular dynamics (MD) simulations with an analytical lith...
Lithium salts dissolved in ionic liquids (ILs) are interesting alternatives to the commonly used ele...