Published April 1, 2017 | Version v1
Journal article

Particle size- and concentration-dependent separation of magnetic nanoparticles

  • 1. Micromod Partikeltechnologie GmbH, Friedrich-Barnewitz-Str. 4, 18119 Rostock (Germany)
  • 2. University of Rostock, Institute of Physics, Albert-Einstein-Str. 23, 18059 Rostock (Germany)
  • 3. Acreo Swedish ICT AB, 40014 Göteborg (Sweden)

Description

Small magnetic nanoparticles with a narrow size distribution are of great interest for several biomedical applications. When the size of the particles decreases, the magnetic moment of the particles decreases. This leads to a significant increase in the separation time by several orders of magnitude. Therefore, in the present study the separation processes of bionized nanoferrites (BNF) with different sizes and concentrations were investigated with the commercial Sepmag Q system. It was found that an increasing initial particle concentration leads to a reduction of the separation time for large nanoparticles due to the higher probability of building chains. Small nanoparticles showed exactly the opposite behavior with rising particle concentration up to 0.1 mg(Fe)/ml. For higher iron concentrations the separation time remains constant and the measured Z-average decreases in the supernatant at same time intervals. At half separation time a high yield with decreasing hydrodynamic diameter of particles can be obtained using higher initial particle concentrations. - Highlights: • Size dependent separation processes of multicore nanoparticles. • Concentration dependent separation processes of multicore nanoparticles. • Increasing separation time with rising concentrations for small particles. • Large particles show typical cooperative magnetophoresis behavior.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.jmmm.2016.11.006

Additional details

Identifiers

DOI
10.1016/j.jmmm.2016.11.006;
PII
S0304-8853(16)32897-9;

Publishing Information

Journal Title
Journal of Magnetism and Magnetic Materials
Journal Volume
427
Journal Page Range
p. 320-324
ISSN
0304-8853
CODEN
JMMMDC

Optional Information

Copyright
Copyright (c) 2016 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.