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Title

Structural and magnetic properties of nanocomposites based on nanostructured polyaniline and titania nanotubes.

Authors

Radoičić, M.; Ćirić-Marjanović, G.; Šaponjić, Z.; Mitrić, M.; Konstantinović, Z.; Stoiljković, M.; Nedeljković, J.

Abstract

Nanocomposites consisting of self-assembled polyaniline (PANI) nanostructures and titania nanotubes (TiO-NT) were synthesized by the oxidative polymerization of aniline with ammonium peroxydisulfate in an aqueous dispersion of TiO-NT (outer diameter ~10 nm), without added acid. The influence of initial mole ratio of aniline to TiO (80, 20, and 5) on the morphology, electrical conductivity, molecular structure, crystallinity, and magnetic properties of synthesized PANI/TiO nanocomposites was studied. Transmission electron microscopy, Raman spectroscopy, and X-ray powder diffraction proved that the shape and structure of TiO-NT in the final nanocomposites were preserved. The shape of PANI nanostructures formed in the nanocomposites was influenced by the initial aniline/TiO-NT mole ratio. Nanotubes and nanorods are predominant PANI nanostructures in the nanocomposite prepared with the highest aniline/TiO mol ratio of 80. The decrease of aniline/TiO molar ratio induced more pronounced formation of nanorod network. The electrical conductivity of PANI/TiO nanocomposites was in the range (1.3-2.4) × 10 S cm. The nanocomposites exhibit weak ferromagnetic behavior. Approximately order of magnitude lower values of coercive field and remanent magnetization were obtained for nanocomposite samples in comparison to pure PANI.

Subjects

NANOCOMPOSITE materials; TITANIUM nanotubes; POLYANILINES; POLYMERIZATION; NANOSTRUCTURES

Publication

Journal of Materials Science, 2013, Vol 48, Issue 17, p5776

ISSN

0022-2461

Publication type

Academic Journal

DOI

10.1007/s10853-013-7370-1

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