Directed assembly of small binary clusters of magnetizable ellipsoids

Abstract

We report the effect of shape anisotropy and material properties on the directed assembly of binary suspensions composed of magnetizable ellipsoids. In a Monte Carlo simulation, we implement the ellipsoid-dipole model to calculate the pairwise dipolar interaction energy as a function of position and orientation. The analysis explores dilute suspensions of paramagnetic and diamagnetic ellipsoids with different aspect ratios in a superparamagnetic medium. We analyze the local order of binary structures as a function of particle aspect ratio, medium permeability, and dipolar interaction strength. Our results show that local order and symmetry are tunable under the influence of a uniform magnetic field when one component of the structure is dilute with respect to the other. The simulation results match previously reported experiments on the directed assembly of binary suspension of spheres. Additionally, we report the conditions on particle aspect ratios and medium properties for various structures with rotational and reflection symmetries, as well as open and enclosed structures under the influence of a uniform magnetic field.

Supplementary files

Article information

Article type
Paper
Submitted
08 Mar 2024
Accepted
22 Jul 2024
First published
27 Jul 2024

Soft Matter, 2024, Accepted Manuscript

Directed assembly of small binary clusters of magnetizable ellipsoids

D. H. Harris and I. Torres-Diaz, Soft Matter, 2024, Accepted Manuscript , DOI: 10.1039/D4SM00300D

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