Predicting magnetic Janus particle assembly with differential evolution algorithm

E Eric A. McPherson (Department of Chemical Engineering, The City College of New York, CUNY 1 , New York, New York 10031,) K Kenneth Kroenlein (Citrine Informatics 2 , Redwood City, California 94063,) I Ilona Kretzschmar

Abstract

Magnetic Janus particles allow access to complex, nonlinear assembled structures that may enable interesting new magnetorheological fluids with uniquely engineered field responses. However, the overwhelming size of the parameter space for Janus and patchy particles makes exploration of such systems by experimental trial and error or through detailed simulation impractical. Here, a differential evolution (DE)-based simulation method is explored to predict the assembly of magnetic Janus particles as an alternative method for assembly prediction. Structure predictions from the DE simulation for laterally and radially shifted magnetic Janus particles are compared to four published experimental and simulation case studies. The DE simulation captures the orientation and structure of magnetic Janus particles for a range of shifts and a variety of external field conditions using the point dipole approximation. Structural predictions that rely on the reorganization of large clusters of particles were less well represented by the DE predictions. Despite this limitation, the DE simulation method can be used to predict key structural factors for magnetic Janus particle assemblies, as demonstrated by favorable comparison with three of the four model studies.

Article Details

Volume / Issue Vol. 163, Issue 2
Published July 14, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (3)

E

Eric A. McPherson

Department of Chemical Engineering, The City College of New York, CUNY 1 , New York, New York 10031,

K

Kenneth Kroenlein

Citrine Informatics 2 , Redwood City, California 94063,

I

Ilona Kretzschmar