Published August 2006 | Version v1
Journal article

Laser-driven synthesis and magnetic properties of iron nanoparticles

  • 1. University at Buffalo, State University of New York, Department of Chemical and Biological Engineering (United States)
  • 2. University at Buffalo, State University of New York, Department of Chemistry (United States)
  • 3. University at Buffalo, State University of New York, Department of Physics (United States)

Description

Nanoparticles of iron have been prepared by laser-driven decomposition of iron pentacarbonyl vapor. In this method, an infrared laser rapidly heats a dilute mixture of precursor vapors to decompose the precursor and initiate particle nucleation. It was found that when using SF6 as a photosensitizer during the synthesis, ferrous fluoride (FeF2) was produced as an undesired byproduct in the product powder. The particle size, composition, and crystalline structure have been characterized using X-ray diffraction (XRD), transmission electron microscopy (TEM), selected area electron diffraction (SAED), and X-ray photoelectron spectroscopy (XPS). Results of magnetization measurements for small iron nanoparticles (about 5 nm diameter) are also presented, showing superparamagnetic behavior at room temperature, and a blocking temperature near 125 K

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Nanoparticle Research
Journal Volume
8
Journal Issue
3-4
Journal Page Range
p. 335-342
ISSN
1388-0764

Conference

Title
Engineering Conferences International (ECI) on nanoparticles from the vapor phase synthesis with chemical and biochemical applications
Dates
8-13 Aug 2004
Place
Davos (Switzerland)

Optional Information

Copyright
Copyright (c) 2006 Springer Science+Business Media, Inc.