Particle-Induced Phase Separation in Aqueous Solutions containing Colloidal Particles and Adsorbing Polymers

Martin Olsson

Research output: ThesisDoctoral Thesis (compilation)

Abstract

The influence of added colloidal particles on the phase behaviour of a polymer solution was investigated. Binary, quasi-binary and mixed polymer solutions were used in the study, where at least one of the polymers had an affinity for the surfaces of the colloidal particles. Experimentally, silica and polystyrene latex particles were used as colloidal particles. Theoretical calculations have been performed on these kinds of systems using the Flory-Huggins theory extended in two different ways to account for the effects of the particles.

Added colloidal particles decreased the stability of the polymer solution. One mechanism that lead to the decreased stability in solutions close to phase separation was capillary-induced phase separation (CIPS). The occurrence of CIPS was seen to depend on different parameters in the solutions, such as the types of polymer and particles, the length of the polymer, the particle concentration and the amount of salt. Another mechanism giving decreased stability of the solutions was adsorption of polymer molecules to the surfaces of the colloidal particles. This creates a “new” kind of particle that interacts unfavourably with the bulk in a mixed polymer solution rich in the polymer with less affinity for the surfaces of the colloidal particles. The interactions between the colloidal particles and the bulk can also be affected by surfactants adsorbing to the surfaces of the colloidal particles, which was shown in a quasi-binary polymer solution.
Original languageEnglish
QualificationDoctor
Awarding Institution
  • Physical Chemistry
Supervisors/Advisors
  • [unknown], [unknown], Supervisor, External person
Award date2004 Dec 10
Publisher
ISBN (Print)91-7422-061-6
Publication statusPublished - 2004

Bibliographical note

Defence details

Date: 2004-12-10
Time: 10:15
Place: Room B, Chemical Center, Lund University

External reviewer(s)

Name: Poon, Wilson
Title: Professor
Affiliation: University of Edinburgh, UK

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Article: 1. Particle-Induced Phase Separation in Quasi-binary Polymer SolutionsMartin Olsson, Fredrik Joabsson, and Lennart PiculellLangmuir 2004, 20, 1605-1610

Article: 2. Capillary-Induced Phase Separation in Binary and Quasi-binary Polymer Solutions. A Mean-Field Lattice StudyMartin Olsson, Per Linse, and Lennart PiculellLangmuir 2004, 20, 1611-1619

Article: 3. Particle-Induced Phase Separation in Mixed Polymer SystemsMartin Olsson, Fredrik Joabsson, and Lennart PiculellLangmuir, submitted 2004

Article: 4. Influence on the Phase Behavior of a Polymer Solution by added Particles analyzed by Mean-Field Lattice TheoryMartin Olsson, Per Linse, and Lennart PiculellManuscript

Article: 5. Added Surfactant can change the Phase Behavior of Aqueous Polymer-Particle MixturesMartin Olsson, Göran Boström, Leif Karlson, and Lennart PiculellLangmuir, submitted 2004

Subject classification (UKÄ)

  • Physical Chemistry (including Surface- and Colloid Chemistry)

Free keywords

  • Polymer technology
  • biopolymers
  • Polymerteknik
  • theoretical calculations
  • particle-induced phase separation
  • phase behaviour
  • surfactant
  • colloidal particles
  • adsorbing polymer

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