Fluids of rod-like particles near curved surfaces
arXiv:cond-mat/9810316 · doi:10.1103/PhysRevE.59.4216
Abstract
We study fluids of hard rods in the vicinity of hard spherical and cylindrical surfaces at densities below the isotropic-nematic transition. The Onsager second virial approximation is applied, which is known to yield exact results for the bulk properties in the limit of infinitely thin rods. This approach requires the computation of the one-particle distribution function and of the Mayer function which is greatly facilitated by an appropriate expansion in terms of spherical harmonics. We determine density and orientational profiles as well as the surface tension as function of the surface curvature radius . Already in the low-density limit of non-interacting rods turns out to be non-analytic at , which prohibits the application of the commonly used Helfrich expansion. The interparticle interaction modifies the behavior of as compared to the low-density limit quantitatively and qualitatively.
21 pages plus 13 postscript figures, to be submitted to Physical Review E
Cited by in corpus (10)
- Observation of dipole-dipole interaction in a degenerate quantum gas
- Continuous Paranematic-to-Nematic Ordering Transitions of Liquid Crystals in Tubular Silica Nanochannels
- Topological Defects in Nematic Droplets of Hard Spherocylinders
- Fluids of platelike particles near a hard wall
- Entropic Interactions in Suspensions of Semi-Flexible Rods: Short-Range Effects of Flexibility
- Bulk and surface biaxiality in nematic liquid crystals
- Implications of interface conventions for morphometric thermodynamics
- Shapes within shapes: how particles arrange inside a cavity
- Orientational wetting and topological transitions in confined solutions of semi-flexible polymers
- Vesicles in solutions of hard rods