Monte Carlo study of excluded volume effects in wormlike micelles and semiflexible polymers
- 1 December 1996
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review E
- Vol. 54 (6) , R5917-R5920
- https://doi.org/10.1103/physreve.54.r5917
Abstract
An off-lattice pseudocontinuous model for semiflexible polymerlike micelles with excluded volume interactions is presented. Expansion factors are determined for the radius of gyration squared and for three different characteristic point-point distances squared. They are found to scale with an exponent in agreement with renormalization-group results and with previous lattice simulations. A comparison with the Yamakawa-Stockmayer-Shimada theory gives a reduced binary cluster integral for the micelles which is similar to the value for polystyrene (PS) in a good solvent. We present an approach for simultaneously analyzing the point-point distance distribution functions and obtaining the characteristic parameters of these. Scattering functions are determined and used for analyzing small-angle neutron scattering data from PS in a good solvent.
Keywords
This publication has 31 references indexed in Scilit:
- Formation of Polymerlike Mixed Micelles and Vesicles in Lecithin-Bile Salt Solutions: A Small-Angle Neutron-Scattering StudyThe Journal of Physical Chemistry, 1995
- Excluded-Volume Effects and Internal Chain Dynamics in Giant Polymer-like Lecithin Reverse MicellesThe Journal of Physical Chemistry, 1994
- Polymer-like lecithin reverse micelles. 1. A light scattering studyLangmuir, 1994
- On the application of polymer renormalization group theory to polymer-like microemulsionsJournal de Physique II, 1993
- Structure of giant micelles: a small angle neutron scattering studyJournal de Physique II, 1991
- Cylindrical structure and flexibility of polymerlike lecithin reverse micellesThe Journal of Physical Chemistry, 1991
- Structural and dynamic properties of polymer-like reverse micellesThe Journal of Physical Chemistry, 1990
- Statistical mechanics of helical worm-like chains. XV. Excluded-volume effectsThe Journal of Chemical Physics, 1986
- Statistical Mechanics of Wormlike Chains. II. Excluded Volume EffectsThe Journal of Chemical Physics, 1972
- Efficient Computer Simulation of Polymer Conformation. I. Geometric Properties of the Hard-Sphere ModelMacromolecules, 1972