Why polymer chains in a melt are not random walks
arXiv:cond-mat/0611322 · doi:10.1209/0295-5075/77/56003
Abstract
A cornerstone of modern polymer physics is the `Flory ideality hypothesis' which states that a chain in a polymer melt adopts `ideal' random-walk-like conformations. Here we revisit theoretically and numerically this pivotal assumption and demonstrate that there are noticeable deviations from ideality. The deviations come from the interplay of chain connectivity and the incompressibility of the melt, leading to an effective repulsion between chain segments of all sizes . The amplitude of this repulsion increases with decreasing where chain segments become more and more swollen. We illustrate this swelling by an analysis of the form factor , i.e. the scattered intensity at wavevector resulting from intramolecular interferences of a chain. A `Kratky plot' of {\em vs.} does not exhibit the plateau for intermediate wavevectors characteristic of ideal chains. One rather finds a conspicuous depression of the plateau, , which increases with and only depends on the monomer density .
4 pages, 4 figures, EPL, accepted January 2007
Cited by in corpus (23)
- Static and dynamic properties of large polymer melts in equilibrium
- Intramolecular long-range correlations in polymer melts: The segmental size distribution and its moments
- Understanding, predicting, and tuning the fragility of vitrimeric polymers
- Characteristic time and length scales in melts of Kremer-Grest bead-spring polymers with wormlike bending stiffness
- Renormalized one-loop theory of correlations in polymer blends
- Intramolecular Form Factor in Dense Polymer Systems: Systematic Deviations from the Debye formula
- Structural and conformational dynamics of supercooled polymer melts: Insights from first-principles theory and simulations
- Multiscale approach to equilibrating model polymer melts
- Scale-free static and dynamical correlations in melts of monodisperse and Flory-distributed homopolymers: A review of recent bond-fluctuation model studies
- Static Rouse Modes and Related Quantities: Corrections to Chain Ideality in Polymer Melts
- Detailed analysis of Rouse mode and dynamic scattering function of highly entangled polymer melts in equilibrium
- Effective Soft-Core Potentials and Mesoscopic Simulations of Binary Polymer Mixtures
- A finite excluded volume bond-fluctuation model: Static properties of dense polymer melts revisited
- Event-Chain Monte-Carlo Simulations of Dense Soft Matter Systems
- Multiscale equilibration of highly entangled isotropic model polymer melts
- Relaxation Dynamics of Entangled Linear Polymer Melts via Molecular Dynamics Simulations
- Static and dynamic scaling behavior of a polymer melt model with triple-well bending potential
- Lattice Monte Carlo Simulations of Polymer Melts
- Generating multi-chain configurations of an inhomogeneous melt from the knowledge of single-chain properties
- Distance dependence of angular correlations in dense polymer solutions
- Non-ideal behavior of intramolecular structure factor of dilute polymers in a theta solvent
- Characterization of local dynamics and mobilities in polymer melts - a simulation study
- Topological comparison of flexible and semiflexible chains in polymer melts with -chains