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Viscosity of flexible and semiflexible ring melts -- molecular origins and flow-induced segregation

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arxiv 2305.15886 v2 pith:F6RXPKRZ submitted 2023-05-25 cond-mat.soft cond-mat.stat-mech

Viscosity of flexible and semiflexible ring melts -- molecular origins and flow-induced segregation

classification cond-mat.soft cond-mat.stat-mech
keywords viscositychainsflexiblemeltsringringssemiflexibleunder
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We investigate with numerical simulations the molecular origin of viscosity in melts of flexible and semiflexible oligomer rings in comparison to corresponding systems with linear chains. The strong increase of viscosity with ring stiffness is linked to the formation of entangled clusters, which dissolve under shear. This shear-induced breakup and alignment of rings in the flow direction lead to pronounced shear-thinning and non-Newtonian behavior. In melts of linear chains, the viscosity can be associated with the (average) number of entanglements between chains, which also dissolve under shear. While blends of flexible and semiflexible rings are mixed at rest, the two species separate under flow. This phenomenon has potential applications in microfluidic devices to segregate ring polymers of similar mass and chemical composition by their bending rigidity.

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