Issue 29, 2023

Island hopping of active colloids

Abstract

Individual self-propelled colloidal particles, like active Brownian particles (ABP) or run-and-tumble (RT) swimmers, exhibit characteristic and well-known motion patterns. However, their interaction with obstacles remains an open and important problem. We here investigate the two-dimensional motion of silica–gold Janus particles (JP) suspended in a bath of smaller silica passive particles. Actuated by AC electric fields, the JP cruise through passive colloids organized in ‘islands’ due to attractive electrohydrodynamic (EHD) flows. A typical island contains dozens of particles. The JP travels straight in obstacle-free regions and reorients abruptly upon collision with an island. As an underlying mechanism, we propose that the scattering events are caused by the interplay of EHD flows, self-propulsion and local torques. The combination of directed motion and sudden reorientations leads to active trajectories resembling the RT behavior of biological microswimmers.

Graphical abstract: Island hopping of active colloids

Supplementary files

Article information

Article type
Paper
Submitted
03 Apr 2023
Accepted
05 Jul 2023
First published
06 Jul 2023

Soft Matter, 2023,19, 5452-5458

Island hopping of active colloids

V. M. S. G. Tanuku, P. Vogel, T. Palberg and I. Buttinoni, Soft Matter, 2023, 19, 5452 DOI: 10.1039/D3SM00446E

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