Volume 181, 2015

Magnetophoretic assembly of flexible nanoparticles/lipid microfilaments

Abstract

The directed assembly of colloidal particles into linear chains and clusters is of fundamental and practical importance. In this study we characterize and analyse the mechanism of the magnetic field driven assembly of lipid-coated iron oxide nanoparticles into flexible microfilaments. Recently we showed that nanocapillary lipid binding can form a new class of magnetic nanoparticle-lipid microfilaments with unprecedented flexibility and self-healing properties. In the presence of a uniform magnetic field, the magnetophoretic attraction of the particles combined with interparticle dipole–dipole attraction drives the microfilament assembly. The fluid like lipid layer on the particles leads to stickiness on the surface of the filaments and the magnetic field concentration overcomes the potential electrostatic repulsion in the water phase. The lipid capillary bridges formed between the particles facilitate their permanent binding and sustain the flexible microfilament structure. We demonstrate that this surface stickiness combined with the magnetic response of the filaments can be used further to twist, bend and bundle the microfilaments into unusual structures.

Associated articles

Article information

Article type
Paper
Submitted
20 Dec 2014
Accepted
22 Jan 2015
First published
29 Apr 2015

Faraday Discuss., 2015,181, 437-448

Author version available

Magnetophoretic assembly of flexible nanoparticles/lipid microfilaments

B. Bharti, A. Fameau and O. D. Velev, Faraday Discuss., 2015, 181, 437 DOI: 10.1039/C4FD00272E

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