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Erschienen in: Rheologica Acta 2/2006

01.12.2006 | Original Contribution

Linear rheology of comb polymers with star-like backbones: melts and solutions

verfasst von: Michael Kapnistos, George Koutalas, Nikos Hadjichristidis, Jacques Roovers, David J. Lohse, Dimitris Vlassopoulos

Erschienen in: Rheologica Acta | Ausgabe 2/2006

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Abstract

We investigate the linear rheology of model star-comb homopolymers consisting of star-like backbone chains with grafted branches. We show that the tube-based theory in the framework of full dynamic dilution, appropriately modified to account for the effects of the fluctuations of the free segments (the segments of the star arms between the outer branching points and the arms’ free end-monomers) of the backbone star arms, and the polydispersity accurately describes the linear viscoelastic spectrum. For these branched polymers, the relaxation is found to proceed hierarchically, similar to combs with linear backbones. However, in contrast to the latter, here, there is no reptation. The higher functionality star combs with sparse branching are particularly interesting because they resemble a Cayley tree structure and are treated in the context of asymmetric star polymers. We also employ solutions of star combs and test our model in static dilution conditions. In the region where despite the presence of both static (solvent) and dynamic dilution the polymers remain entangled, our model is particularly successful without adjusting any parameters.

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Fußnoten
1
Thereafter, by backbone of the star-comb polymer, we refer to the original star polymer whose arms were grafted with branches; by backbone relaxation, we refer to the star arm retraction.
 
2
Very short chains exhibit lower glass transition temperature. As a result, the corresponding solution also shows lower glass transition temperature. To present those data along with the melts in a unified plot, we need to move the reference temperature at the same distance from T g.
 
3
All data reported in this work are referred to T ref=273 K.
 
4
The Rouse mechanism is encountered when the backbones are no longer entangled with themselves. Of course, the backbones are still entangled with branches.
 
5
We need to note that the plateau values determined from experiments were consistently 10–15 % higher than the usual literature value (106.11 against 106.05 Pa). Such a difference, although relatively small, if used, would lead to an unreasonable entanglement molecular weight value, thus, we did not used it.
 
6
The relaxation of 4sc2-PBd was overestimated. This is probably due mainly to fluctuations in q (in fact, its variation from arm to arm). In addition, it is noted that the model assumes that all branches relax simultaneously, and this is a simplification. In practice, the branch point closest to the free segments is free to move and relax the corresponding branches much sooner, as soon as the free segments have relaxed. This will reduce the effective relaxation time compared to the model approach. The effect is observable only in this case because these samples contain very long branches and many branch points.
 
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Metadaten
Titel
Linear rheology of comb polymers with star-like backbones: melts and solutions
verfasst von
Michael Kapnistos
George Koutalas
Nikos Hadjichristidis
Jacques Roovers
David J. Lohse
Dimitris Vlassopoulos
Publikationsdatum
01.12.2006
Verlag
Springer-Verlag
Erschienen in
Rheologica Acta / Ausgabe 2/2006
Print ISSN: 0035-4511
Elektronische ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-006-0106-2

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