Compact structure and non-Gaussian dynamics of ring polymer melts

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Abstract

We present a neutron scattering analysis of the structure and dynamics of PEO polymer rings with a molecular weight 2.5 times higher than the entanglement mass. The melt structure was found to be more compact than a Gaussian model would suggest. With increasing time the center of mass (c.o.m.) diffusion undergoes a transition from sub-diffusive to diffusive behavior. The transition time agrees well with the decorrelation time predicted by a mode coupling approach. As a novel feature well pronounced non-Gaussian behavior of the c.o.m. diffusion was found that shows surprising analogies to the cage effect known from glassy systems. Finally, the longest wavelength Rouse modes are suppressed possibly as a consequence of an onset of lattice animal features as hypothesized in theoretical approaches. © 2014 The Royal Society of Chemistry.

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Brás, A. R., Gooßen, S., Krutyeva, M., Radulescu, A., Farago, B., Allgaier, J., … Richter, D. (2014). Compact structure and non-Gaussian dynamics of ring polymer melts. Soft Matter, 10(20), 3649–3655. https://doi.org/10.1039/c3sm52717d

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