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Hybrid Polyaniline/Nanomagnetic Particles Composites: High Performance Materials for EMI Shielding

Identifieur interne : 000337 ( Main/Exploration ); précédent : 000336; suivant : 000338

Hybrid Polyaniline/Nanomagnetic Particles Composites: High Performance Materials for EMI Shielding

Auteurs : Noureddine El Kamchi [France] ; Belkacem Belaabed [Algérie] ; Jean-Luc Wojkiewicz [France] ; Saad Lamouri [Algérie] ; Tuami Lasri [France]

Source :

RBID : Pascal:13-0195838

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English descriptors

Abstract

In this work, two types of hybrid composite materials were elaborated. The first based on polyaniline (PANI) doped Camphor Sulfonic acid (CSA), Carbon-Coated Cobalt (CCo), and FeNi nanoparticles dispersed in polyurethane. A value of 104 S/m of conductivity and a 90 dB of shielding effectiveness in multilayer structure were obtained over the 8-18 GHz frequency band. The second type, based on PANI doped para-toluene sulfonic acid (PTSA), dispersed in epoxy resin with FeNi nanoparticles. A thick material with moderate conductivity and high attenuation of electromagnetic waves was obtained. It was found that a PANI-PTSA/FeNi/epoxy resin composite with thicknesses of 9.7 and 6.5 mm had, respectively, reflection loss values of -22 dB at 9.52 GHz, and -20.7 dB at 14.7 GHz. The electromagnetic properties of the elaborated structure hybrid materials can be optimized to increase the electromagnetic reflection-absorption properties. Thus, the obtained structure can be used in shielding and radar absorbing materials applications.


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Le document en format XML

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<term>Aniline polymer</term>
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<term>Carbon</term>
<term>Coated particle</term>
<term>Cobalt</term>
<term>Composite material</term>
<term>Conducting polymers</term>
<term>Doped polymer</term>
<term>Electromagnetic properties</term>
<term>Electromagnetic shielding</term>
<term>Electromagnetic wave absorption</term>
<term>Epoxy resin</term>
<term>Experimental study</term>
<term>Hybrid composite</term>
<term>Iron alloy</term>
<term>Magnetic particles</term>
<term>Nanocomposite</term>
<term>Nickel alloy</term>
<term>Polymer blends</term>
<term>Polyurethane</term>
<term>Sulfonic acid</term>
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<term>Aniline polymère</term>
<term>Nanocomposite</term>
<term>Ecran électromagnétique</term>
<term>Composite hybride</term>
<term>Acide sulfonique</term>
<term>Polymère dopé</term>
<term>Mélange polymère</term>
<term>Uréthanne polymère</term>
<term>Particule magnétique</term>
<term>Epoxyde résine</term>
<term>Propriété électromagnétique</term>
<term>Cobalt</term>
<term>Particule enrobée</term>
<term>Carbone</term>
<term>Fer alliage</term>
<term>Nickel alliage</term>
<term>Absorption onde électromagnétique</term>
<term>Etude expérimentale</term>
<term>Polymère aromatique</term>
<term>Polymère conducteur</term>
<term>Matériau composite</term>
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<term>Cobalt</term>
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<div type="abstract" xml:lang="en">In this work, two types of hybrid composite materials were elaborated. The first based on polyaniline (PANI) doped Camphor Sulfonic acid (CSA), Carbon-Coated Cobalt (CCo), and FeNi nanoparticles dispersed in polyurethane. A value of 10
<sup>4</sup>
S/m of conductivity and a 90 dB of shielding effectiveness in multilayer structure were obtained over the 8-18 GHz frequency band. The second type, based on PANI doped para-toluene sulfonic acid (PTSA), dispersed in epoxy resin with FeNi nanoparticles. A thick material with moderate conductivity and high attenuation of electromagnetic waves was obtained. It was found that a PANI-PTSA/FeNi/epoxy resin composite with thicknesses of 9.7 and 6.5 mm had, respectively, reflection loss values of -22 dB at 9.52 GHz, and -20.7 dB at 14.7 GHz. The electromagnetic properties of the elaborated structure hybrid materials can be optimized to increase the electromagnetic reflection-absorption properties. Thus, the obtained structure can be used in shielding and radar absorbing materials applications.</div>
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