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Photo Marie Skepö

Marie Skepö

Professor

Photo Marie Skepö

Complexation, phase separation, and redissolution in polyelectrolyte-macroion solutions

Author

  • Marie Skepö
  • Per Linse

Summary, in English

The complexation, phase separation, and redissolution of polyelectrolyte-macroion solutions have been studied by means of Monte Carlo simulations. A simple model system with focus on the electrostatic interactions has been used to examine the properties of the macroion solutions at different amounts of oppositely charged polyelectrolytes. As oppositely charged polyelectrolytes are added, the stable macroion solution with repelling macroions becomes successively less stable. The strong electrostatic attraction brings macroions and polyelectrolytes closely together, and slightly before macromolecular charge equivalence, distinct and repelling complexes formed by macroions and polyelectrolytes are established. At macromolecular charge equivalence, the system becomes unstable, and a large and loose cluster of macro

ons and polyelectrolytes is formed. Finally, in excess of polyelectrolytes, the

large cluster is broken up and the macroions are dispersed again-a

redissolution has occurred. The effect of the macroion radius, the

chain length, and the chain flexibility on the phase separation is also

investigated. A semiflexible chain displayed a smaller tendency to

promote phase instability as compared to flexible and stiff chains, the

origin most likely arising from the similar chain persistence length

and macroion

radius.

Department/s

  • Department of Chemistry
  • Physical Chemistry

Publishing year

2003

Language

English

Pages

508-519

Publication/Series

Macromolecules

Volume

36

Issue

2

Document type

Journal article

Publisher

The American Chemical Society (ACS)

Topic

  • Physical Chemistry (including Surface- and Colloid Chemistry)

Status

Published

ISBN/ISSN/Other

  • ISSN: 0024-9297