Publication | Closed Access
Direct Observation of the Transition from Free to Constrained Single-Segment Motion in Entangled Polymer Melts
91
Citations
20
References
2003
Year
EngineeringPolymer ChainSoft MatterEntangled Polymer MeltsMechanicsDirect ObservationPolymer ProcessingRheologyBiophysicsMaterials ScienceRouse RelaxationPhysicsPlasticityPolymer MeltPolymer SolutionPolyethylene PropylenePolymer ScienceApplied PhysicsPolymerization KineticsSingle-segment MotionNeutron ScatteringPolymer Modeling
We report a direct determination of the time dependent mean-squared segment displacement of a polymer chain in the melt covering the transition from free to constraint Rouse relaxation along the virtual tube of the reptation model. This has been achieved by a neutron spin-echo (NSE) measurement of the segmental self-correlation function as conveyed by the spin-incoherent scattering from two fully protonated polymer melts, polyethylene and polyethylene propylene. Within the scenario of de Gennes reptation model a transition of the time dependence of segmental mean-squared displacements from proportional, variant t(1/2) to proportional, variant t(1/4) is expected and clearly corroborated by the incoherent NSE results.
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