Active Brownian particles in random and porous environments

Author:

Moore Fergus12,Russo John34ORCID,Liverpool Tanniemola B.4ORCID,Royall C. Patrick256ORCID

Affiliation:

1. Bristol Centre for Functional Nanomaterials, University of Bristol 1 , Bristol BS8 1FD, United Kingdom

2. H. H. Wills Physics Laboratory 2 , Tyndall Ave., Bristol BS8 1TL, United Kingdom

3. Department of Physics, Sapienza University of Rome 3 , P.le Aldo Moro 5, 00185 Rome, Italy

4. School of Mathematics, University of Bristol 4 , Bristol BS8 1UG, United Kingdom

5. Gulliver UMR CNRS 7083, ESPCI Paris, Université PSL 5 , 75005 Paris, France

6. School of Chemistry, Cantock’s Close, University of Bristol 6 , Bristol BS8 1TS, United Kingdom

Abstract

The transport of active particles may occur in complex environments, in which it emerges from the interplay between the mobility of the active components and the quenched disorder of the environment. Here, we explore the structural and dynamical properties of active Brownian particles (ABPs) in random environments composed of fixed obstacles in three dimensions. We consider different arrangements of the obstacles. In particular, we consider two particular situations corresponding to experimentally realizable settings. First, we model pinning particles in (non-overlapping) random positions and, second, in a percolating gel structure and provide an extensive characterization of the structure and dynamics of ABPs in these complex environments. We find that the confinement increases the heterogeneity of the dynamics, with new populations of absorbed and localized particles appearing close to the obstacles. This heterogeneity has a profound impact on the motility induced phase separation exhibited by the particles at high activity, ranging from nucleation and growth in random disorder to a complex phase separation in porous environments.

Funder

European Research Council

Engineering and Physical Sciences Research Council

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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