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Heterogeneous Coordination Environments in Lithium-Neutralized Ionomers Identified Using (1)H and (7)Li MAS NMR

The carboxylic acid proton and the lithium coordination environments for precise and random Li-neutralized polyethylene acrylic acid P(E-AA) ionomers were explored using high speed solid-state (1)H and (7)Li MAS NMR. While the (7)Li NMR revealed only a single Li coordination environment, the chemica...

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Detalles Bibliográficos
Autores principales: Alam, Todd M., Jenkins, Janelle E., Bolintineanu, Dan S., Stevens, Mark J., Frischknecht, Amalie L., Buitrago, C. Francisco, Winey, Karen I., Opper, Kathleen L., Wagener, Kenneth B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5448934/
http://dx.doi.org/10.3390/ma5081508
Descripción
Sumario:The carboxylic acid proton and the lithium coordination environments for precise and random Li-neutralized polyethylene acrylic acid P(E-AA) ionomers were explored using high speed solid-state (1)H and (7)Li MAS NMR. While the (7)Li NMR revealed only a single Li coordination environment, the chemical shift temperature variation was dependent on the precise or random nature of the P(E-AA) ionomer. The (1)H MAS NMR revealed two different carboxylic acid proton environments in these materials. By utilizing (1)H-(7)Li rotational echo double resonance (REDOR) MAS NMR experiments, it was demonstrated that the proton environments correspond to different average (1)H-(7)Li distances, with the majority of the protonated carboxylic acids having a close through space contact with the Li. Molecular dynamics simulations suggest that the shortest (1)H-(7)Li distance corresponds to un-neutralized carboxylic acids directly involved in the coordination environment of Li clusters. These solid-state NMR results show that heterogeneous structural motifs need to be included when developing descriptions of these ionomer materials.