Polyelectrolyte-Compression Forces between Spherical DNA Brushes
arXiv:0710.0303 · doi:10.1103/PhysRevLett.100.118302
Abstract
Optical tweezers are employed to measure the forces of interaction within a single pair of DNA-grafted colloids in dependence of the molecular weight of the DNA-chains, and the concentration and valence of the surrounding ionic medium. The resulting forces are short-range and set in as the surface-to-surface distance between the colloidal cores reaches the value of the brush height. The measured force-distance dependence is analyzed by means of a theoretical treatment based on the compression of the chains on the surface of the opposite-lying colloid. Quantitative agreement with the experiment is obtained for all parameter combinations.
4 pages, 4 figures, 1 table; manuscript submitted to Phys. Rev. Lett
References in corpus (5)
- Soft Spheres Make More Mesophases
- A Family of Tunable Spherically-Symmetric Potentials that Span the Range from Hard Spheres to Water-like Behavior
- Rod-like Polyelectrolyte Brushes with Mono- and Multivalent Counterions
- Effective non-additive pair potential for lock-and-key interacting particles: the role of the limited valence
- Polyelectrolyte stars in planar confinement