English

Statistical properties of linear-hyperbranched graft copolymers prepared via "hypergrafting" of AB_m monomers from linear B-functional core chains: A Molecular Dynamics simulation

Soft Condensed Matter 2015-11-09 v2

Abstract

The reaction of ABmAB_m monomers (m=2,3) with a multifunctional B_f-type polymer chain ("hypergrafting") is studied by coarse-grained molecular dynamics simulations. The ABmAB_m monomers are hypergrafted using the slow monomer addition strategy. Fully dendronized, i.e., perfectly branched polymers are also simulated for comparison. The degree of branching DB of the molecules obtained with the "hypergrafting" process critically depends on the rate with which monomers attach to inner monomers compared to terminal monomers. This ratio is more favorable if the ABmAB_m monomers have lower reactivity, since the free monomers then have time to diffuse inside the chain. Configurational chain properties are also determined, showing that the stretching of the polymer backbone as a consequence of the "hypergrafting" procedure is much less pronounced than for perfectly dendronized chains. Furthermore, we analyze the scaling of various quantities with molecular weight M for large M (M>100). The Wiener index scales as M2.3M^2.3, which is intermediate between linear chains (M3M^3) and perfectly branched polymers (M2ln(M)M^2 \ln(M)). The polymer size, characterized by the radius of gyration RgR_g or the hydrodynamic radius RhR_h, is found to scale as Rg,h MνR_{g,h}~M^{\nu} with ν 0.38\nu~0.38, which lies between the exponent of diffusion limited aggregation (ν=0.4\nu=0.4) and the mean-field exponent predicted by Konkolewicz and coworkers (ν=0.33\nu=0.33).

Keywords

Cite

@article{arxiv.1510.08225,
  title  = {Statistical properties of linear-hyperbranched graft copolymers prepared via "hypergrafting" of AB_m monomers from linear B-functional core chains: A Molecular Dynamics simulation},
  author = {Hauke Rabbel and Holger Frey and Friederike Schmid},
  journal= {arXiv preprint arXiv:1510.08225},
  year   = {2015}
}

Comments

minor typos corrected, to appear in The Journal of Chemical Physics