DocumentCode :
1155714
Title :
Synthesis of core-shell nanoclusters with high magnetic moment for biomedical applications
Author :
Qiang, You ; Antony, Jiji ; Marino, Michael G. ; Pendyala, Sweta
Author_Institution :
Dept. of Phys., Univ. of Idaho, Moscow, ID, USA
Volume :
40
Issue :
6
fYear :
2004
Firstpage :
3538
Lastpage :
3540
Abstract :
Biocompatible magnetic nanoparticles have been found to be promising in several biomedical applications for tagging, imaging, sensing, and separation in recent years. Most magnetic particles or beads currently used in biomedical applications are based on ferromagnetic iron oxides with very low specific magnetic moments of about 20-30 emu/g. Here, we report a new approach to synthesize monodispersive core-shell nanostructured clusters with high specific magnetic moments above 200 emu/g. The Fe nanoclusters, ranging in size from 2 to 100 nm, are produced from a newly developed cluster source and go to a deposition chamber, where a chemical reaction starts, and the nanoclusters are coated with Fe oxides. High-resolution transmission electron microscopy images show the coatings are very uniform. The core-shell nanoclusters are superparamagnetic at room temperature for sizes less than 12 nm, and have the coercivity of about 1.5 kOe at low temperature (5 K).
Keywords :
biosensors; ferromagnetic materials; iron; magnetic moments; magnetic particles; magnetic sensors; nanoparticles; superparamagnetism; transmission electron microscopy; 5 K; Fe; biocompatible magnetic nanoparticles; biomagnetic sensor; biomedical applications; core-shell nanoclusters; core-shell structure; ferrite oxide; ferromagnetic iron oxides; high-resolution transmission electron microscopy images; monodispersive core-shell nanostructured clusters; specific magnetic moment; Biomedical imaging; Chemicals; Iron; Magnetic cores; Magnetic moments; Magnetic particles; Magnetic separation; Nanoparticles; Tagging; Temperature; 65; Biomagnetic sensor; core-shell structure; magnetic nanoparticles;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2004.828962
Filename :
1353462
Link To Document :
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