Tube theory of entangled polymer dynamics
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Abstract
The dynamics of entangled ¯exible polymers is dominated by physics general to many chemical systems. It is an appealing interdisciplinary ®eld where experimentaland theoretical physics can work closely with chemistry and chemical engineering. The role of topological interactions is particularly important, and has given rise to a successful theoretical framework: the `tubemodel’. Progress over the last 30 years is reviewed in the light of specially-synthesized model materials, an increasing palette of experimental techniques, simulation and both linear and nonlinear rheological response. Our current understandingof a series of processes in entangled dynamics: `reptation’, `contour length ¯uctuation ’ and…
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Topics
Keywords
- Reptation
- Palette (painting)
- Context (archaeology)
- Nonlinear system
- Branching (polymer chemistry)
- Statistical physics
- Polymer
- Computer science
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