Complexation of a polyelectrolyte with oppositely charged spherical macroions: Giant inversion of charge
arXiv:cond-mat/0011096 · doi:10.1063/1.1355289
Abstract
Complexation of a long flexible polyelectrolyte (PE) molecule with oppositely charged spherical particles such as colloids, micelles, or globular proteins in a salty water solution is studied. PE binds spheres winding around them, while spheres repel each other and form almost periodic necklace. If the total charge of PE is larger than the total charge of spheres, repulsive correlations of PE turns on a sphere lead to inversion of the net charge of each sphere. In the opposite case, we predict another correlation effect: under-screened by PE spheres bind to PE in such a great number that they invert charge of PE. The inverted charge by absolute value can be larger than the bare charge of PE even when screening by monovalent salt is weak. At larger concentrations of monovalent salt, the inverted charge can reach giant proportions. Our theory is in qualitative agreement with recent experiments on micelles-PE systems.
Various additions and corrections to the text, Figures and references. Accepted for publication in J. Chem. Phys. 2001
References in corpus (5)
- Reentrant Condensation of DNA induced by Multivalent Counterions
- Screening of a charged particle by multivalent counterions in salty water: Giant charge inversion
- Charged surface in salty water with multivalent ions: Giant inversion of charge
- Organized condensation of worm-like chains
- Stretching necklaces
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