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Influence of wall heterogeneity on nanoscopically confined polymers

Academic Article
Publication Date:
2019
abstract:
We investigate via molecular dynamics simulations the behaviour of a polymer melt confined between surfaces with increasing spatial correlation (patchiness) of weakly and strongly interacting sites. Beyond a critical patchiness, we find a dramatic dynamic decoupling, characterized by a steep growth of the longest relaxation time and a constant diffusion coefficient. This arises from dynamic heterogeneities induced by the walls in the adjacent polymer layers, leading to the coexistence of fast and slow chain populations. Structural variations are also present, but they are not easy to detect. Our work opens the way to a better understanding of adhesion, friction, rubber reinforcement by fillers, and many other open issues involving the dynamics of polymeric materials on rough, chemically heterogeneous and possibly "dirty" surfaces.
Iris type:
01.01 Articolo in rivista
Keywords:
Glass transition | Polymer films | segmental dynamics
List of contributors:
Pastore, Raffaele
Authors of the University:
PASTORE RAFFAELE
Handle:
https://iris.cnr.it/handle/20.500.14243/343489
Published in:
PCCP. PHYSICAL CHEMISTRY CHEMICAL PHYSICS (PRINT)
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