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Functionalized graphene-PVDF foam composites for EMI shielding
Published in
2011
Volume: 296
   
Issue: 10
Pages: 894 - 898
Abstract
Novel foam composites comprising functionalized graphene (f-G) and polyvinylidene fluoride (PVDF) were prepared and electrical conductivity and electromagnetic interference (EMI) shielding efficiency of the composites with different mass fractions of f-G have been investigated. The electrical conductivity increases with the increase in concentration of f-G in insulating PVDF matrix. A dramatic change in the conductivity is observed from 10 -16 S · m-1 for insulating PVDF to 10-4 S · m-1 for 0.5 wt.% f-G reinforced PVDF composite, which can be attributed to high-aspect-ratio and highly conducting nature of f-G nanofiller, which forms a conductive network in the polymer. An EMI shielding effectiveness of ≈20 dB is obtained in X-band (8-12 GHz) region and 18 dB in broadband (1-8 GHz) region for 5 wt.% of f-G in foam composite. The application of conductive graphene foam composites as lightweight EMI shielding materials for X-band and broadband shielding has been demonstrated and the mechanism of EMI shielding in f-G/PVDF foam composites has been discussed. © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
About the journal
JournalMacromolecular Materials and Engineering
ISSN14387492
Open AccessNo
Concepts (24)
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    Conductive networks
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    Different mass
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    Electrical conductivity
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    EMI SHIELDING
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    EMI SHIELDING EFFECTIVENESS
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    FOAM COMPOSITES
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    Functionalized
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    High aspect ratio
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    Matrix
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    NANOFILLER
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    Polyvinylidene fluorides
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    SHIELDING EFFICIENCY
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    Aspect ratio
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    Conductive materials
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    Electric conductivity
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    Electromagnetic pulse
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    Electromagnetic wave interference
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    Electromagnetism
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    Foams
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    Functional polymers
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    Graphene
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    Shielding
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    Signal interference
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    Electromagnetic shielding