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  4. Micellar Solutions of PMMA-b-PNIPAM in Water/Methanol Mixtures: Effect of Temperature on the Micellar Size, Core-shell Structure, and Interaction
 
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2023
Journal Article
Title

Micellar Solutions of PMMA-b-PNIPAM in Water/Methanol Mixtures: Effect of Temperature on the Micellar Size, Core-shell Structure, and Interaction

Abstract
In aqueous solution, diblock copolymers PMMA-b-PNIPAM having a short PMMA block and a long PNIPAM block form micelles with a PMMA core and a PNIPAM-rich shell. The same holds true for solutions in water containing small amounts of methanol. Here, we address the micellar structures for 10 g L-1 solutions of PMMA21-b-PNIPAM283 in 90:10 and 80:20 v/v water/methanol in wide temperature ranges across the respective cloud point temperature. Dynamic light scattering and synchrotron small angle X-ray scattering reveal that the content of methanol strongly influences the temperature behavior of the overall micellar size upon heating to the cloud point temperature, the aggregation number of the micelles, their shell thickness, and their interactions. While the behavior in the 90:10 mixture is similar to that in neat water, in the 80:20 mixture, the micelles are significantly smaller and form clusters already below the cloud point temperature in water. Thus, by variation of the methanol content, the structure and interactions of the micelles can be controlled
Author(s)
Ko, Chia-Hsin
Technical University of Munich, TUM School of Natural Sciences, Physics Department
Henschel, Cristiane
Universität Potsdam, Institut für Chemie
Meledam, Geethu P.
Technical University of Munich, TUM School of Natural Sciences, Physics Department
Schroer, Martin
European Molecular Biology Laboratory, Hamburg
Guo, Renjun
Technical University of Munich, TUM School of Natural Sciences, Physics Department,
Müller-Buschbaum, Peter
Technical University of Munich, TUM School of Natural Sciences, Physics Department
Laschewsky, Andre  
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
Papadakis, Christine M.
Technical University of Munich, TUM School of Natural Sciences, Physics Department
Journal
Macromolecules  
Project(s)
Co-nonsolvency-induzierte Selbstorganisation thermoresponsiver Blockcopolymere in Lösung und in dünnen Filmen  
Funder
Deutsche Forschungsgemeinschaft  
DOI
10.1021/acs.macromol.3c01579
Language
English
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
Fraunhofer Group
Fraunhofer-Verbund Werkstoffe, Bauteile - Materials  
Keyword(s)
  • block copolymer

  • thermo-responsive

  • lower critical solution temperature

  • co-nonsolvency

  • self-assembly

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