Polyelectrolyte Condensation Induced by Linear Cations
arXiv:0709.3540 · doi:10.1103/PhysRevLett.99.138302
Abstract
We examine the role of the condensing agent in the formation of polyelectrolyte bundles, via grand-canonical Monte Carlo simulations. Following recent experiments we use linear, rigid divalent cations of various lengths to induce condensation. Our results clarify and explain the experimental results for short cations. For longer cations we observe novel condensation behavior owing to alignment of the cations. We also study the role of the polyelectrolyte surface charge density, and find a nonmonotonic variation in bundle stability. This nonmonotonicity captures two trends that have been observed in separate experiments.
To appear in Physical Review Letters
References in corpus (5)
- Wigner crystal model of counterion induced bundle formation of rod-like polyelectrolytes
- Electrostatic Interactions in Strongly-Coupled Soft Matter
- Flexible Linear Polyelectrolytes in Multivalent Salt Solutions: Solubility Conditions
- Attractive Interactions Between Rod-like Polyelectrolytes: Polarization, Crystallization, and Packing
- Structure and stability of self-assembled actin-lysozyme complexes in salty water