Nanoscale Structure and Morphology of Sulfonated Polyphenylenes via Atomistic Simulations

We performed atomistic simulations on a series of sulfonated polyphenylenes systematically varying the degree of sulfonation and water content to determine their effect on the nanoscale structure, particularly for the hydrophilic domains formed by the ionic groups and water molecules. We found that...

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Bibliographic Details
Published inMacromolecules Vol. 50; no. 3; pp. 1184 - 1192
Main Authors Abbott, Lauren J, Frischknecht, Amalie L
Format Journal Article
LanguageEnglish
Published United States American Chemical Society 14.02.2017
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Summary:We performed atomistic simulations on a series of sulfonated polyphenylenes systematically varying the degree of sulfonation and water content to determine their effect on the nanoscale structure, particularly for the hydrophilic domains formed by the ionic groups and water molecules. We found that the local structure around the ionic groups depended on the sulfonation and hydration levels, with the sulfonate groups and hydronium ions less strongly coupled at higher water contents. In addition, we characterized the morphology of the ionic domains employing two complementary clustering algorithms. At low sulfonation and hydration levels, clusters were more elongated in shape and poorly connected throughout the system. As the degree of sulfonation and water content were increased, the clusters became more spherical, and a fully percolated ionic domain was formed. These structural details have important implications for ion transport.
Bibliography:AC04-94AL85000
USDOE National Nuclear Security Administration (NNSA)
SAND-2017-1157J
ISSN:0024-9297
1520-5835
DOI:10.1021/acs.macromol.6b02232