Topological Effects in Isolated Poly[<i>n</i>]catenanes: Molecular Dynamics Simulations and Rouse Mode Analysis

Phillip M. Rauscher, Stuart J. Rowan, Juan Pablo

ACS Macro Letters · 2018 · 79 citations · 25 references

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Abstract

Poly[<i>n</i>]catenanes are mechanically interlocked polymers consisting of interlocking ring molecules. Over the years, researchers have speculated that the permanent topological interactions within the poly[<i>n</i>]catenane backbone could lead to unique dynamical behaviors. To investigate these unusual polymers, molecular dynamics simulations of isolated poly[<i>n</i>]catenanes have been conducted, along with a Rouse mode analysis. Owing to the mechanical bonds within the molecule, the dynamics of poly[<i>n</i>]catenanes at short length scales are significantly slowed and the distribution of relaxation times is broadened; these same behaviors have been observed in melts of linear polymers and are associated with entanglement. Despite these entanglement-like effects, at large length scales poly[<i>n</i>]catenanes do not relax much slower than isolated linear polymers and are less strongly impacted by increased segmental stiffness.

References

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