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Facile Preparation of Lightweight Microcellular Polyetherimide/Graphene Composite Foams for Electromagnetic Interference Shielding

ACS Applied Materials & Interfaces · 2013 · Vol. 5(7) · pp. 2677–2684
Jianqiang LingWentao ZhaiWeiwei FengBin ShenJianfeng ZhangWen ge Zheng

Abstract

We report a facile approach to produce lightweight microcellular polyetherimide (PEI)/graphene nanocomposite foams with a density of about 0.3 g/cm3 by a phase separation process. It was observed that the strong extensional flow generated during cell growth induced the enrichment and orientation of graphene on cell walls. This action decreased the electrical conductivity percolation from 0.21 vol % for PEI/graphene nanocomposite to 0.18 vol % for PEI/graphene foam. Furthermore, the foaming process significantly increased the specific electromagnetic interference (EMI) shielding effectiveness from 17 to 44 dB/(g/cm3). In addition, PEI/graphene nanocomposite foams possessed low thermal conductivity of 0.065-0.037 W/m·K even at 200 °C and high Young's modulus of 180-290 MPa.

Electromagnetic wave absorption materialsNatural Fiber Reinforced CompositesTribology and Wear AnalysisMaterials sciencePolyetherimideElectromagnetic shieldingComposite numberGrapheneComposite materialElectromagnetic interferenceNanotechnologyPolymerElectronic engineering

Funding

  • National Science Foundation
  • Natural Science Foundation of Ningbo
Citations
756
FWCI
15.76
field-weighted impact
References
36
Percentile
100%
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Citations per year
References
The rise of graphene
Nature Materials · 2007 · 39,026 citations
Tough Graphene−Polymer Microcellular Foams for Electromagnetic Interference Shielding
ACS Applied Materials & Interfaces · 2011 · 1,085 citations
EMI shielding: Methods and materials—A review
Journal of Applied Polymer Science · 2009 · 1,116 citations
Graphene-based composite materials
Nature · 2006 · 12,716 citations
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