Effects of Acid and Ionic Aggregation on the Polymer Dynamics in Precise Ionomers
POSTER
Abstract
Interest in acid- and ion-containing polymers arises from applications as single-ion conductors for selectively transporting a counter ion of the opposite charge for energy applications. The relatively low dielectric constant of the organic polymer and strong ionic interactions leads to ionic aggregation. Ion aggregation anchors the polymer chain, decreasing the mobility of the ion and the polymer. In precise poly(ethylene-acrylic acid) copolymers and ionomers (pxAA-{\%}Li) we report on the effect of carbon spacer length (x$=$9, 15, 21) between the acid groups and the effect of the percent of acid groups neutralized with Li on backbone dynamics. The polymer backbone motion is investigated through quasi-elastic neutron scattering measurements. At nano-second timescales a single relaxation fits the data. Systematic changes in dynamics were observed with increasing neutralization percent where polymer dynamics are confined due to anchoring effects. Intriguingly, systematic changes in the spacer lengths did not result in similar behavior. At pico-second timescales multiple overlapping relaxations are observed but even at these short timescales systematic changes in atomic motion are observed with ion content.
Authors
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Luri Robert Middleton
University of Pennsylvania
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Jacob Tarver
National Institute of Standards and Technology
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Jason Azoulay
Sandia National Laboratory
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Dustin Murtagh
Sandia National Laboratory
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Kenneth Wagener
University of Florida, Univ of Florida
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Joseph Cordaro
Sandia National Laboratory
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Madhu Tyagi
NIST Center for Neutron Research, National Institute of Standards and Technology, NIST Center for Neutron Research, NIST
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Christopher Soles
Natl Inst of Stds \& Tech (NIST), National Institute of Standards and Technology
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Karen Winey
University of Pennsylvania, Univ of Pennsylvania