The Micellization of Well-Defined Single Graft Copolymers in Block Copolymer/Homopolymer Blends

A series of well-defined (polyisoprene)<sub>2</sub>(polystyrene), I<sub>2</sub>S, single graft copolymers with similar total molecular weights but different compositions, <i>f<sub>PS</sub></i>, were blended with a low molecular weight polyisoprene homo...

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Main Authors: Eleni Pavlopoulou, Kiriaki Chrissopoulou, Stergios Pispas, Nikos Hadjichristidis, Spiros H. Anastasiadis
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Polymers
Subjects:
Online Access:https://www.mdpi.com/2073-4360/13/5/833
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spelling doaj-92fa8def7ffa47d99ee2bf7f3f7ee3a42021-03-10T00:02:58ZengMDPI AGPolymers2073-43602021-03-011383383310.3390/polym13050833The Micellization of Well-Defined Single Graft Copolymers in Block Copolymer/Homopolymer BlendsEleni Pavlopoulou0Kiriaki Chrissopoulou1Stergios Pispas2Nikos Hadjichristidis3Spiros H. Anastasiadis4Institute of Electronic Structure and Laser, Foundation for Research and Technology—Hellas, P.O. Box 1527, 71110 Heraklion Crete, GreeceInstitute of Electronic Structure and Laser, Foundation for Research and Technology—Hellas, P.O. Box 1527, 71110 Heraklion Crete, GreeceTheoretical and Physical Chemistry Institute, National Hellenic Research Foundation, 48 Vassileos Constantinou Ave., 11635 Athens, GreeceDepartment of Chemistry, University of Athens, 15771 Athens, GreeceInstitute of Electronic Structure and Laser, Foundation for Research and Technology—Hellas, P.O. Box 1527, 71110 Heraklion Crete, GreeceA series of well-defined (polyisoprene)<sub>2</sub>(polystyrene), I<sub>2</sub>S, single graft copolymers with similar total molecular weights but different compositions, <i>f<sub>PS</sub></i>, were blended with a low molecular weight polyisoprene homopolymer matrix at a constant concentration 2 wt%, and the micellar characteristics were studied by small-angle x-ray scattering. To investigate the effect of macromolecular architecture on the formation and characteristics of micelles, the results on the single graft copolymers were compared with those of the corresponding linear polystyrene-<i>b</i>-polyisoprene diblock copolymers, SI. The comparison reveals that the polystyrene core chains are more stretched in the case of graft copolymer micelles. Stretching turned out to be purely a result of the architecture due to the second polyisoprene block in the corona. The micellization of a (polystyrene)<sub>2</sub>(polyisoprene), S<sub>2</sub>I, graft copolymer was also studied, and the comparison with the results of the corresponding I<sub>2</sub>S and SI copolymers emphasizes the need for a critical core volume rather than a critical length of the core-forming block, in order to have stable micelles. Finally, the absence of micellization in the case of the I<sub>2</sub>S copolymer with the highest polystyrene volume fraction is discussed. For this sample, macrophase separation occurs, with polyisoprene cylinders formed in the copolymer-rich domains of the phase-separated blends.https://www.mdpi.com/2073-4360/13/5/833block copolymersmicellizationsingle graft copolymerssmall angle X-ray scatteringself-assembly
collection DOAJ
language English
format Article
sources DOAJ
author Eleni Pavlopoulou
Kiriaki Chrissopoulou
Stergios Pispas
Nikos Hadjichristidis
Spiros H. Anastasiadis
spellingShingle Eleni Pavlopoulou
Kiriaki Chrissopoulou
Stergios Pispas
Nikos Hadjichristidis
Spiros H. Anastasiadis
The Micellization of Well-Defined Single Graft Copolymers in Block Copolymer/Homopolymer Blends
Polymers
block copolymers
micellization
single graft copolymers
small angle X-ray scattering
self-assembly
author_facet Eleni Pavlopoulou
Kiriaki Chrissopoulou
Stergios Pispas
Nikos Hadjichristidis
Spiros H. Anastasiadis
author_sort Eleni Pavlopoulou
title The Micellization of Well-Defined Single Graft Copolymers in Block Copolymer/Homopolymer Blends
title_short The Micellization of Well-Defined Single Graft Copolymers in Block Copolymer/Homopolymer Blends
title_full The Micellization of Well-Defined Single Graft Copolymers in Block Copolymer/Homopolymer Blends
title_fullStr The Micellization of Well-Defined Single Graft Copolymers in Block Copolymer/Homopolymer Blends
title_full_unstemmed The Micellization of Well-Defined Single Graft Copolymers in Block Copolymer/Homopolymer Blends
title_sort micellization of well-defined single graft copolymers in block copolymer/homopolymer blends
publisher MDPI AG
series Polymers
issn 2073-4360
publishDate 2021-03-01
description A series of well-defined (polyisoprene)<sub>2</sub>(polystyrene), I<sub>2</sub>S, single graft copolymers with similar total molecular weights but different compositions, <i>f<sub>PS</sub></i>, were blended with a low molecular weight polyisoprene homopolymer matrix at a constant concentration 2 wt%, and the micellar characteristics were studied by small-angle x-ray scattering. To investigate the effect of macromolecular architecture on the formation and characteristics of micelles, the results on the single graft copolymers were compared with those of the corresponding linear polystyrene-<i>b</i>-polyisoprene diblock copolymers, SI. The comparison reveals that the polystyrene core chains are more stretched in the case of graft copolymer micelles. Stretching turned out to be purely a result of the architecture due to the second polyisoprene block in the corona. The micellization of a (polystyrene)<sub>2</sub>(polyisoprene), S<sub>2</sub>I, graft copolymer was also studied, and the comparison with the results of the corresponding I<sub>2</sub>S and SI copolymers emphasizes the need for a critical core volume rather than a critical length of the core-forming block, in order to have stable micelles. Finally, the absence of micellization in the case of the I<sub>2</sub>S copolymer with the highest polystyrene volume fraction is discussed. For this sample, macrophase separation occurs, with polyisoprene cylinders formed in the copolymer-rich domains of the phase-separated blends.
topic block copolymers
micellization
single graft copolymers
small angle X-ray scattering
self-assembly
url https://www.mdpi.com/2073-4360/13/5/833
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