Microwave absorption behavior of a polyaniline magnetic composite in the X-band

The development of nanosized materials is a subject of considerable interest both for understanding of the fundamental properties of magnetic materials for new technological applications. Polyaniline, composites Fe3O4/(PANI) with conducting, magnetic and electromagnetic properties with different amo...

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Published inPhysica. B, Condensed matter Vol. 407; no. 16; pp. 3168 - 3171
Main Authors Aphesteguy, J.C., Damiani, A., DiGiovanni, D., Jacobo, S.E.
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LanguageEnglish
Published Kidlington Elsevier B.V 15.08.2012
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Abstract The development of nanosized materials is a subject of considerable interest both for understanding of the fundamental properties of magnetic materials for new technological applications. Polyaniline, composites Fe3O4/(PANI) with conducting, magnetic and electromagnetic properties with different amounts of Fe3O4 were successfully prepared. The samples were structurally characterized by scanning electron microscopy (SEM), X-ray diffraction and transmission electron microscopy (TEM) and magnetically, with a superconducting quantum interference device (SQUID) magnetometer. In order to explore microwave-absorbing properties in X-band, the composite nanoparticles were mixed with an epoxy resin to be converted into a microwave-absorbing composite. Microwave behavior with different Fe3O4/(PANI)-epoxy resin ratio was studied using a microwave vector network analyzer (VNA) in the range 7.5 to 13GHz. For a constant thickness of 1.5mm, absorption increases with the magnetite contents in the composites and in the oriented samples by the application of a magnetic field.
AbstractList The development of nanosized materials is a subject of considerable interest both for understanding of the fundamental properties of magnetic materials for new technological applications. Polyaniline, composites Fe3O4/(PANI) with conducting, magnetic and electromagnetic properties with different amounts of Fe3O4 were successfully prepared. The samples were structurally characterized by scanning electron microscopy (SEM), X-ray diffraction and transmission electron microscopy (TEM) and magnetically, with a superconducting quantum interference device (SQUID) magnetometer. In order to explore microwave-absorbing properties in X-band, the composite nanoparticles were mixed with an epoxy resin to be converted into a microwave-absorbing composite. Microwave behavior with different Fe3O4/(PANI)-epoxy resin ratio was studied using a microwave vector network analyzer (VNA) in the range 7.5 to 13 GHz. For a constant thickness of 1.5 mm, absorption increases with the magnetite contents in the composites and in the oriented samples by the application of a magnetic field.
The development of nanosized materials is a subject of considerable interest both for understanding of the fundamental properties of magnetic materials for new technological applications. Polyaniline, composites Fe3O4/(PANI) with conducting, magnetic and electromagnetic properties with different amounts of Fe3O4 were successfully prepared. The samples were structurally characterized by scanning electron microscopy (SEM), X-ray diffraction and transmission electron microscopy (TEM) and magnetically, with a superconducting quantum interference device (SQUID) magnetometer. In order to explore microwave-absorbing properties in X-band, the composite nanoparticles were mixed with an epoxy resin to be converted into a microwave-absorbing composite. Microwave behavior with different Fe3O4/(PANI)-epoxy resin ratio was studied using a microwave vector network analyzer (VNA) in the range 7.5 to 13GHz. For a constant thickness of 1.5mm, absorption increases with the magnetite contents in the composites and in the oriented samples by the application of a magnetic field.
Author Jacobo, S.E.
DiGiovanni, D.
Damiani, A.
Aphesteguy, J.C.
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Issue 16
Keywords Conducting polyaniline
Magnetic Nanocomposites
Microwave absorption
Scanning electron microscopy
Inorganic compounds
Iron oxide
Transition element compounds
Magnetic field effects
Epoxy resin
XRD
Thickness
Nanoparticles
Magnetite
Composite materials
Transmission electron microscopy
SQUID magnetometers
Magnetic materials
Polyanilines
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Snippet The development of nanosized materials is a subject of considerable interest both for understanding of the fundamental properties of magnetic materials for new...
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SubjectTerms Condensed matter
Condensed matter: electronic structure, electrical, magnetic, and optical properties
Conducting polyaniline
Cross-disciplinary physics: materials science; rheology
Exact sciences and technology
Magnetic Nanocomposites
Magnetic properties and materials
Materials science
Microwave absorption
Microwave and radio-frequency interactions (excluding resonances)
Microwaves
Nanopowders
Nanoscale materials and structures: fabrication and characterization
Nanostructure
Optical properties and condensed-matter spectroscopy and other interactions of matter with particles and radiation
Other interactions of matter with particles and radiation
Physics
Polyanilines
Scanning electron microscopy
Small particles and nanoscale materials
SQUIDs
Studies of specific magnetic materials
Superconducting quantum interference devices
X-band
Title Microwave absorption behavior of a polyaniline magnetic composite in the X-band
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