Conformation of a Polyelectrolyte Complexed to a Like-Charged Colloid
arXiv:cond-mat/0111341 · doi:10.1103/PhysRevE.65.041805
Abstract
We report results from a molecular dynamics (MD) simulation on the conformations of a long flexible polyelectrolyte complexed to a charged sphere, \textit{both negatively charged}, in the presence of neutralizing counterions in the strong Coulomb coupling regime. The structure of this complex is very sensitive to the charge density of the polyelectrolyte. For a fully charged polyelectrolyte the polymer forms a dense two-dimensional "disk", whereas for a partially charged polyelectrolyte the monomers are spread over the colloidal surface. A mechanism involving the \textit{overcharging} of the polyelectrolyte by counterions is proposed to explain the observed conformations.
4 pages, 4 figures (6 EPS files)
References in corpus (1)
Cited by in corpus (5)
- Polyelectrolyte Multilayering on a Charged Sphere
- Like-Charge Colloid-Polyelectrolyte Complexation
- Polyelectrolyte-surfactant complex: phases of self-assembled structures
- Charged rosettes at high and low ionic strengths
- Kinetic Arrest in Polyion-Induced Inhomogeneously-Charged Colloidal Particle Aggregation