Monte Carlo calculations for the intrinsic viscosity of several dendrimer molecules
- 14 October 2005
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 123 (15) , 154901
- https://doi.org/10.1063/1.2056546
Abstract
We have performed Monte Carlo simulations to reproduce the intrinsic viscosity corresponding to different generation of several types of dendrite molecules: polyamidoamine dendrimers with an ethylendiamine core, polypropylene-imine with a diaminobutane core, and monodendrons and tridendrons of polybenzylether. With this end, we have employed coarse-grained idealizations of the molecules constituted by only two beads in each repeat unit (one in a branching or end unit and one intermediate along the repeat unit) and a simple hard-sphere potential between non-neighboring beads. Our goal is to investigate if this simple model is able to provide a reasonable description of some differences between these systems that have been observed experimentally, in particular, the location of the maximum in the intrinsic viscosity as a function of the generation number. Experimental radii of gyration in a given solvent are reproduced by a fit of the hard-sphere potential diameter. Subsequently, intrinsic viscosities are calculated by the variational approach of Fixman, which yields an accurate lower-bound value with an additional hydrodynamic interaction parameter (the friction radius of the beads). The results show a pronounced variation of the maximum location with the value of the friction radius and the structural details that cannot be mimicked with simpler models. The initial conformations for the Monte Carlo procedure are taken from atomistic configurations thermalized by means of a molecular dynamics.Keywords
This publication has 40 references indexed in Scilit:
- Monte Carlo simulation of dendrimers in variable solvent qualityThe Journal of Chemical Physics, 2004
- Effect of Solvent Quality and Electrostatic Interactions on Size and Structure of Dendrimers. Brownian Dynamics Simulation and Mean-Field TheoryMacromolecules, 2004
- Block and alternating copolymer chains of styrene–vinylmethylether and styrene–methylmethacrylate by molecular dynamics simulationPolymer, 2004
- Adsorption of Poly(amidoamine) Dendrimers on GoldLangmuir, 2000
- Brownian Dynamics Simulations of Dendrimers under Shear FlowMacromolecules, 2000
- Structure and rheology of hyperbranched and dendritic polymers. II. Effects of blending acetylated and hydroxy-terminated poly(propyleneimine) dendrimers with aqueous poly(ethylene oxide) solutionsJournal of Polymer Science Part B: Polymer Physics, 2000
- Conformations and dynamics of dendrimers and cascade macromoleculesThe Journal of Chemical Physics, 1997
- Intrinsic viscosity of model Starburst dendrimersThe Journal of Physical Chemistry, 1992
- Dimensions and intrinsic viscosities of long linear and star chains in good- and Θ-solvent conditionsMacromolecules, 1991
- Lower bounds for the intrinsic viscosity of flexible polymers. Comparison with Brownian dynamics simulation results for different types of chainsComputer Physics Communications, 1990