English

Study of Active Brownian Particle Diffusion in Polymer Solutions

Soft Condensed Matter 2018-01-11 v1

Abstract

The diffusion behavior of an active Brownian particle (ABP) in polymer solutions is studied using Langevin dynamics simulations. We find that the long time diffusion coefficient DD can show a non-monotonic dependence on the particle size RR if the active force FaF_{a} is large enough, wherein a bigger particle would diffuse faster than a smaller one which is quite counterintuitive. By analyzing the short time dynamics in comparison to the passive one, we find that such non-trivial dependence results from the competition between persistence motion of the ABP and the length-scale dependent effective viscosity that the particle experienced in the polymer solution. \textcolor{black}{We have also introduced an effective viscosity ηeff\eta_{\text{eff}} experienced by the ABP phenomenologically. Such an active ηeff\eta_{\text{eff}} is found to be larger than a passive one and strongly depends on RR and FaF_{a}}\textcolor{magenta}{.} In addition, we find that the dependence of DD on propelling force FaF_{a} presents a well scaling form at a fixed RR and the scaling factor changes non-monotonically with RR. Such results demonstrate that active issue plays rather subtle roles on the diffusion of nano-particle in complex solutions.

Keywords

Cite

@article{arxiv.1801.03279,
  title  = {Study of Active Brownian Particle Diffusion in Polymer Solutions},
  author = {Yunfei Du and Zhonghuai Hou},
  journal= {arXiv preprint arXiv:1801.03279},
  year   = {2018}
}

Comments

10 pages and 7 figures

R2 v1 2026-06-22T23:41:22.514Z