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Erschienen in: Journal of Nanoparticle Research 6/2009

01.08.2009 | Research Paper

Investigation of nanostructured Fe3O4 polypyrrole core-shell composites by X-ray absorbtion spectroscopy and X-ray diffraction using synchrotron radiation

verfasst von: Nicolae Aldea, Rodica Turcu, Alexandrina Nan, Izabella Craciunescu, Ovidiu Pana, Xie Yaning, Zhonghua Wu, Doina Bica, Ladislau Vekas, Florica Matei

Erschienen in: Journal of Nanoparticle Research | Ausgabe 6/2009

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Abstract

In this article, we focus on the structural peculiarities of nanosized Fe3O4 in the core-shell nanocomposites obtained by polymerization of conducting polypyrrole shell around Fe3O4 nanoparticles. The local structure of Fe atoms was determined from the Extended X-ray Absorption Fine Structure analysis using our own package computer programs. An X-ray diffraction method that is capable to determine average particle size, microstrains, as the particle size distribution of Fe3O4 nanoparticles is presented. The method is based on the Fourier analysis of a single X-ray diffraction profile using a new fitting method based on the generalized Fermi function facilities. The crystallites size obtained by X-ray diffraction spectra analysis was estimated between 3.2 and 10.3 nm. Significant changes in the first and the second Fe coordination shell in comparison with standard bulk were observed. The global and local structure of the nanosized Fe3O4 are correlated with the synthesis conditions of the core-shell polypyrrole nanocomposites.

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Metadaten
Titel
Investigation of nanostructured Fe3O4 polypyrrole core-shell composites by X-ray absorbtion spectroscopy and X-ray diffraction using synchrotron radiation
verfasst von
Nicolae Aldea
Rodica Turcu
Alexandrina Nan
Izabella Craciunescu
Ovidiu Pana
Xie Yaning
Zhonghua Wu
Doina Bica
Ladislau Vekas
Florica Matei
Publikationsdatum
01.08.2009
Verlag
Springer Netherlands
Erschienen in
Journal of Nanoparticle Research / Ausgabe 6/2009
Print ISSN: 1388-0764
Elektronische ISSN: 1572-896X
DOI
https://doi.org/10.1007/s11051-008-9536-3

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